<?xml version="1.0" encoding="utf-8"?>
<rss version="2.0" xmlns:media="http://search.yahoo.com/mrss/">
    <channel>
                    <title>Phys.org - latest science and technology news stories</title>
            <link>https://phys.org/</link>
            <language>en-us</language>
            <description>Phys.org internet news portal provides the latest news on science including: Physics, Nanotechnology, Life Sciences, Space Science, Earth Science, Environment, Health and Medicine.</description>

                            <item>
                    <title>Three quantum-inspired cores leave opposite fingerprints on the ringing of black holes</title>
                    <description>Every black hole hides a question at its center. Einstein&#039;s theory predicts that whatever falls in is crushed into a singularity, a point of infinite density where the theory itself breaks down. Most physicists expect quantum gravity to replace that point with something finite. But the center lies hidden behind the horizon. How could we ever learn what is there?</description>
                    <link>https://phys.org/news/2026-10-quantum-cores-fingerprints-black-holes.html</link>
                    <category>General Physics</category>                    <pubDate>Fri, 09 Oct 2026 17:40:01 EDT</pubDate>
                    <guid isPermaLink="false">news710671667</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/three-quantum-inspired.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>SPHEREx spots menagerie of brown dwarfs with atmospheric water and methane</title>
                    <description>NASA&#039;s SPHEREx (Spectro-Photometer for the History of the universe, Epoch of Reionization, and ices Explorer) space telescope is shedding light on brown dwarfs, celestial objects that blur the line between stars and exoplanets. New findings published in The Astrophysical Journal show that these dark and cloudy worlds have chemically rich atmospheres not unlike the giant planets in our own solar system.</description>
                    <link>https://phys.org/news/2026-10-spherex-menagerie-brown-dwarfs-atmospheric.html</link>
                    <category>Astronomy</category>                    <pubDate>Fri, 09 Oct 2026 09:20:05 EDT</pubDate>
                    <guid isPermaLink="false">news710755921</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/nasas-spherex-telescop-2.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Lightsaber-like plasma antenna uses laser-ionized air to transmit radio waves</title>
                    <description>Researchers have demonstrated a technique that uses a laser to produce a plasma beam antenna capable of transmitting radio waves. The article, &quot;Laser-Induced-Plasma-Filament Antenna Transmitting 30 MHz VHF,&quot; is published in the IEEE Journal of Microwaves.</description>
                    <link>https://phys.org/news/2026-10-lightsaber-plasma-antenna-laser-ionized.html</link>
                    <category>Optics &amp; Photonics</category>                    <pubDate>Mon, 05 Oct 2026 13:20:10 EDT</pubDate>
                    <guid isPermaLink="false">news710421001</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/a-small-electronic-dev.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Dyed liquid crystals enable light-only control of optical components</title>
                    <description>A new technique for controlling optical components with light could help usher in a generation of high-efficiency signal-processing technology that could drive futuristic applications such as holographic video.</description>
                    <link>https://phys.org/news/2026-09-dyed-liquid-crystals-enable-optical.html</link>
                    <category>Nanophysics</category>                    <pubDate>Tue, 29 Sep 2026 17:20:16 EDT</pubDate>
                    <guid isPermaLink="false">news709915321</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/controlling-light-with-1.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Earth&#039;s deep secret: Why your day isn&#039;t quite 24 hours</title>
                    <description>You might think the length of a day never varies—exactly 24 hours. You&#039;d be wrong, at least if you count days in milliseconds, as physicists do.</description>
                    <link>https://phys.org/news/2026-09-earth-deep-secret-day-isnt.html</link>
                    <category>Earth Sciences</category>                    <pubDate>Thu, 24 Sep 2026 12:00:11 EDT</pubDate>
                    <guid isPermaLink="false">news709460884</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/earths-deep-secret-why.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Earth&#039;s chorus waves show limited link to rapid electron loss from radiation belts</title>
                    <description>The Van Allen radiation belts are huge, doughnut-shaped regions of highly energetic charged particles trapped by Earth&#039;s magnetosphere. These charged particles play a major role in space weather, so studying them is important for predicting and managing risks to satellites, astronauts, power grids and other infrastructure.</description>
                    <link>https://phys.org/news/2026-09-earth-chorus-limited-link-rapid.html</link>
                    <category>Planetary Sciences</category>                    <pubDate>Tue, 22 Sep 2026 15:00:01 EDT</pubDate>
                    <guid isPermaLink="false">news709307581</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/presumed-role-of-choru.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>X-ray light is like guitar music, with frequencies sliding continuously between harmonics</title>
                    <description>Ultrashort laser pulses can be used to generate X-rays. Normally, however, only certain specific frequencies are produced. A team from TU Wien and the University of California San Diego has developed a method that makes it possible to tune the frequency continuously.</description>
                    <link>https://phys.org/news/2026-09-ray-guitar-music-frequencies-harmonics.html</link>
                    <category>Optics &amp; Photonics</category>                    <pubDate>Mon, 21 Sep 2026 09:40:08 EDT</pubDate>
                    <guid isPermaLink="false">news709201204</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/x-ray-light-is-like-gu.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Vapor-phase synthesis of MXenes could expand their technological applications</title>
                    <description>MXenes are two-dimensional nanomaterials first synthesized at Drexel University in 2011. They have been recognized by the International Union of Pure and Applied Chemistry as an emerging technology with &quot;true potential to transform our world.&quot; But their widespread use has thus far been limited by the complicated process required to produce them.</description>
                    <link>https://phys.org/news/2026-09-vapor-phase-synthesis-mxenes-technological.html</link>
                    <category>Nanomaterials</category>                    <pubDate>Thu, 17 Sep 2026 15:50:02 EDT</pubDate>
                    <guid isPermaLink="false">news708876901</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/new-process-for-making.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>What kills Schrödinger&#039;s cat? Underground experiment rules out gravity model for quantum decoherence</title>
                    <description>Somewhere between the microscopic realm of elementary particles and the macroscopic world of human beings, something strange happens: The rules of quantum physics, which work so exquisitely for tiny atoms, seem to lose their grip as objects grow larger. Pondering where and how this shift from small-scale quantum fuzziness to everyday sharp certainty happens gives rise to thought-experiment oddities like Schrödinger&#039;s famous dead-and-alive cat. The process by which quantum phenomena like superposition—the paradoxical affliction of Schrödinger&#039;s cat—fade into the classical reality we experience is known as decoherence.</description>
                    <link>https://phys.org/news/2026-09-schrdinger-cat-underground-gravity-quantum.html</link>
                    <category>General Physics</category>                    <pubDate>Thu, 17 Sep 2026 15:00:11 EDT</pubDate>
                    <guid isPermaLink="false">news708864241</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/what-kills-schrdingers.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Novel particle beam could challenge Einstein&#039;s theory of gravity</title>
                    <description>Does gravity act equally on all particles in the universe, or are there differences between ordinary and exotic matter? Physics professor Anna Soter and her team at ETH Zurich and the Paul Scherrer Institute (PSI) in Villigen are investigating this question. &quot;We have taken an important step toward carrying out an exciting experiment on this topic,&quot; says Soter. &quot;We want to measure the gravitational interaction of the muon.&quot;</description>
                    <link>https://phys.org/news/2026-09-particle-einstein-theory-gravity.html</link>
                    <category>General Physics</category>                    <pubDate>Tue, 15 Sep 2026 09:40:06 EDT</pubDate>
                    <guid isPermaLink="false">news708683461</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/novel-particle-beam-co.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Tightly guided atoms could enable low-power quantum navigation when GPS fails</title>
                    <description>Within tiny halos of light clinging to a vanishingly thin wisp of optical fiber, scientist Jongmin Lee guides atoms like marbles through a narrow pipe. Rock the fiber and the atoms shift side by side; they just don&#039;t fall off. But don&#039;t be deceived by the seemingly delicate nature of his experiment. Lee is exploring how to measure motion precisely in rough-and-tumble environments.</description>
                    <link>https://phys.org/news/2026-09-tightly-atoms-enable-power-quantum.html</link>
                    <category>Optics &amp; Photonics</category>                    <pubDate>Thu, 10 Sep 2026 15:40:10 EDT</pubDate>
                    <guid isPermaLink="false">news708260101</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/jongmin-lee-adjusts-a.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Ultrathin silicon structures can tune mid-IR light in billionths of a second</title>
                    <description>Light in the mid-infrared (mid-IR) portion of the electromagnetic spectrum plays a key role in modern sensing. Because molecules interact with this kind of light in specific ways, researchers use technologies like mid-IR spectroscopy to identify biological materials, drugs and pollutants. Mid-IR light can also serve as a carrier of information in free-space optical communications, where data are transmitted through the air without using cables or fibers. Better control of mid-IR light could therefore lead to more sensitive detectors and faster communications.</description>
                    <link>https://phys.org/news/2026-09-ultrathin-silicon-tune-mid-ir.html</link>
                    <category>Nanophysics</category>                    <pubDate>Thu, 10 Sep 2026 14:40:07 EDT</pubDate>
                    <guid isPermaLink="false">news708256891</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/ultra-thin-silicon-str-2.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Chandra uncovers &#039;hypersoft X-ray sources&#039; that may solve two astrophysical puzzles</title>
                    <description>Using NASA&#039;s Chandra X-ray Observatory, scientists have discovered a new class of objects behaving unlike any they have seen before. Astronomers suggest these newly spotted objects in other galaxies may help solve not one, but two long-standing questions in astrophysics.</description>
                    <link>https://phys.org/news/2026-09-chandra-uncovers-hypersoft-ray-sources.html</link>
                    <category>Astronomy</category>                    <pubDate>Wed, 09 Sep 2026 17:20:09 EDT</pubDate>
                    <guid isPermaLink="false">news708182461</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/a-composite-image-of-t-1.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Cosmic radiation at flight altitudes rises when the sun is less active</title>
                    <description>Radiation from space is constantly entering Earth&#039;s atmosphere, but how much of it reaches the altitudes used by commercial aircraft depends not only on height and location, but also on the activity of the sun. A new study based on high-altitude balloon measurements over southern Israel has mapped these changes through the atmosphere and found that radiation levels at aviation altitudes rise as solar activity falls.</description>
                    <link>https://phys.org/news/2026-09-cosmic-flight-altitudes-sun.html</link>
                    <category>Earth Sciences</category>                    <pubDate>Tue, 08 Sep 2026 17:40:03 EDT</pubDate>
                    <guid isPermaLink="false">news708100801</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/commercial-aircraft.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Superfluid qubit could help scale up quantum computers</title>
                    <description>Superfluid helium could offer a new way to tackle one of the biggest challenges in scaling up quantum computers, say researchers from the University of Surrey. The research team has introduced a conceptual design for a new type of qubit that could be much less vulnerable to errors.</description>
                    <link>https://phys.org/news/2026-09-superfluid-qubit-scale-quantum.html</link>
                    <category>General Physics</category>                    <pubDate>Tue, 08 Sep 2026 10:00:05 EDT</pubDate>
                    <guid isPermaLink="false">news708076622</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2025/quantum-computing.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Betelgeuse&#039;s atmosphere is becoming spotty and asymmetric—and a nearby companion could be shaping the pattern</title>
                    <description>For the first time since its dramatic dimming in 2020, a team of astronomers has observed the inner atmosphere of Betelgeuse using the Atacama Large Millimeter Array (ALMA). Led by Bill Dent at the University of Manchester, the team found that the giant star&#039;s inner atmosphere has become increasingly uneven and asymmetric, in a way that could be connected to a far smaller companion star.</description>
                    <link>https://phys.org/news/2026-09-betelgeuse-atmosphere-spotty-asymmetric-nearby.html</link>
                    <category>Astronomy</category>                    <pubDate>Fri, 04 Sep 2026 12:20:03 EDT</pubDate>
                    <guid isPermaLink="false">news707734879</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/betelgeuses-atmosphere.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>BESIII sets world&#039;s most stringent direct limit on Lambda hyperon electric dipole moment</title>
                    <description>The BESIII Collaboration, led by the Institute of High Energy Physics of the Chinese Academy of Sciences, has achieved the world&#039;s most precise measurement of the electric dipole moment (EDM) of the Lambda (Λ) hyperon using quantum-entangled Λ–anti-Λ pairs produced in J/ψ decays. The result improves the experimental sensitivity by about three orders of magnitude compared with the previous measurement, providing a new way to probe charge-parity (CP) violation in particles containing strange quarks.</description>
                    <link>https://phys.org/news/2026-09-besiii-world-stringent-limit-lambda.html</link>
                    <category>General Physics</category>                    <pubDate>Thu, 03 Sep 2026 14:00:17 EDT</pubDate>
                    <guid isPermaLink="false">news707655901</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/besiii-achieves-worlds.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Quantum control algorithm looks to explain how birds migrate</title>
                    <description>The hidden world of quantum mechanics exists at scales many orders of magnitude smaller than living organisms, yet scientists have long theorized that quantum effects play an important role in biology. Birds&#039; ability to sense magnetic fields during migration is one of the best-known mysteries in this field, with leading theories suggesting that this sensing could be achieved by exploiting quantum entanglement.</description>
                    <link>https://phys.org/news/2026-09-quantum-algorithm-birds-migrate.html</link>
                    <category>Quantum Physics</category>                    <pubDate>Thu, 03 Sep 2026 09:20:07 EDT</pubDate>
                    <guid isPermaLink="false">news707643721</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2023/bird-migrating.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>LEDs let archaeologists see the past in a new light</title>
                    <description>An archaeological excavation is a little like eating a layered cake: Once you have removed a layer, you cannot put it back. The problem becomes even trickier if two layers look almost exactly the same. Researchers from Aarhus University and Moesgaard Museum in Denmark have now developed a relatively inexpensive multispectral imaging system that gives archaeologists more ways of looking at the soil before they dig into it.</description>
                    <link>https://phys.org/news/2026-09-archaeologists.html</link>
                    <category>Archaeology</category>                    <pubDate>Tue, 01 Sep 2026 18:40:07 EDT</pubDate>
                    <guid isPermaLink="false">news707501701</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/led-lets-archaeologist.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Faint far-infrared radiation drives a correlated insulator-to-metal transition in magic-angle graphene</title>
                    <description>One of the central ideas in modern physics is the phase transition—a sudden transformation of the state of a material. We encounter phase transitions throughout everyday life: water freezes into ice, wax melts in the warmth of a flame, and water vapor condenses into droplets on a cold window. In these familiar examples, the atoms themselves rearrange into a new structure, giving the material entirely different properties.</description>
                    <link>https://phys.org/news/2026-08-faint-infrared-insulator-metal-transition.html</link>
                    <category>Condensed Matter</category>                    <pubDate>Mon, 31 Aug 2026 18:20:03 EDT</pubDate>
                    <guid isPermaLink="false">news707384285</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/faint-far-infrared-rad.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Femtosecond nano-imaging reveals ultrafast optical control of phonon polaritons</title>
                    <description>A collaborative research team has successfully visualized in real space the ultrafast optical modulation of hyperbolic phonon polaritons (HPhPs)  in a van der Waals heterostructure composed of hBN and WS2. The research is published in the journal Nano Letters, and was led by Kazuki Kamada of the Institute for Molecular Science (IMS) and Osaka Metropolitan University, along with Dr. Jun Nishida, assistant professor at IMS, and Takashi Kumagai, associate professor at IMS.</description>
                    <link>https://phys.org/news/2026-08-femtosecond-nano-imaging-reveals-ultrafast.html</link>
                    <category>Nanophysics</category>                    <pubDate>Mon, 31 Aug 2026 18:00:07 EDT</pubDate>
                    <guid isPermaLink="false">news707405941</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/new-imaging-method-cap.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>First observation of optical Magnus effect could sharpen quantum computer control</title>
                    <description>Table tennis professionals are true masters at redirecting fast-moving projectiles. Putting a targeted spin on a serve can make the little white ball fly straight toward the edge of the table but then, at the last moment, take a sharp curve into the left corner. The physical phenomenon behind this sporting trick is known as the Magnus effect. It acts on balls of all sizes and has helped decide more than a few soccer matches.</description>
                    <link>https://phys.org/news/2026-08-optical-magnus-effect-sharpen-quantum.html</link>
                    <category>Optics &amp; Photonics</category>                    <pubDate>Thu, 27 Aug 2026 11:20:04 EDT</pubDate>
                    <guid isPermaLink="false">news707047501</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/a-surprising-twist-in.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Ramped fields create more robust entanglement between trapped-ion qubits</title>
                    <description>While quantum computing could be the future, it is currently plagued by finicky hardware. To make the technology practical, researchers must demonstrate that it consistently and continuously works and performs at scale. In a new study, published in Physical Review Letters, researchers at Lawrence Livermore National Laboratory (LLNL) and the Ion Storage Group at the National Institute of Standards and Technology in Boulder, Colorado, created a robust process for entangling trapped-ion qubits. The result means better building blocks for ion-based quantum computers.</description>
                    <link>https://phys.org/news/2026-08-ramped-fields-robust-entanglement-ion.html</link>
                    <category>Quantum Physics</category>                    <pubDate>Wed, 26 Aug 2026 18:20:06 EDT</pubDate>
                    <guid isPermaLink="false">news706969261</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/a-more-robust-way-to-c.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Tiny atomic changes could lead to smarter wireless technology</title>
                    <description>Researchers at Queen Mary University of London have shown that making extremely small changes to the structure of a material can dramatically improve its ability to respond to electrical signals. Published recently in Science Advances, the breakthrough could help create a new generation of wireless devices that can change frequency on demand, making communication systems more flexible and energy efficient.</description>
                    <link>https://phys.org/news/2026-08-tiny-atomic-smarter-wireless-technology.html</link>
                    <category>Nanophysics</category>                    <pubDate>Wed, 26 Aug 2026 14:00:12 EDT</pubDate>
                    <guid isPermaLink="false">news706896901</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/electrical-signals.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Hyperdoped silicon photodiode advances short-wave infrared detection at room temperature</title>
                    <description>Detecting short-wave infrared (SWIR) light, a region of the electromagnetic spectrum just beyond the light visible to the human eye, could be advantageous for many real-world applications. For instance, it could enable more advanced systems for capturing images at night, as well as sophisticated medical imaging, environmental monitoring and industrial inspection technologies.</description>
                    <link>https://phys.org/news/2026-08-hyperdoped-silicon-photodiode-advances-short.html</link>
                    <category>Condensed Matter</category>                    <pubDate>Wed, 26 Aug 2026 08:00:06 EDT</pubDate>
                    <guid isPermaLink="false">news706796840</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/hyperdoped-silicon-pho.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Sound waves do double duty, carrying and protecting quantum information</title>
                    <description>Researchers at the Harvard John A. Paulson School of Engineering and Applied Sciences (SEAS) have demonstrated a promising new way to protect fragile quantum information using nothing but mechanical vibrations—essentially extremely small sound waves. The breakthrough, which comes from the lab of Marko Lončar, Tiantsai Lin Professor of Electrical Engineering, paves a path toward compact, sound-based quantum networks on chips, as well as hybrid quantum systems that combine many different types of quantum bits, or qubits.</description>
                    <link>https://phys.org/news/2026-08-duty-quantum.html</link>
                    <category>Quantum Physics</category>                    <pubDate>Tue, 25 Aug 2026 17:00:03 EDT</pubDate>
                    <guid isPermaLink="false">news706882021</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/qubits-dressed-for-suc.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Vacuum-fluctuation-enhanced superconductivity demonstrated for the first time</title>
                    <description>In a study published in Nature on Aug. 19, a research team has enhanced superconductivity through vacuum fluctuations for the first time. The achievement marks a significant advance in controlling quantum states of matter.</description>
                    <link>https://phys.org/news/2026-08-vacuum-fluctuation-superconductivity.html</link>
                    <category>Superconductivity</category>                    <pubDate>Mon, 24 Aug 2026 16:50:01 EDT</pubDate>
                    <guid isPermaLink="false">news706806661</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2020/2-superconduct.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>&#039;Rainbow-on-a-chip&#039; could help unlock 6G networks and precision timing for quantum technologies</title>
                    <description>Loughborough University physicists and an international team have demonstrated that a grain-of-rice-sized microchip can be used to produce a spectrum of precisely spaced frequencies of light, which is then converted into multiple high-frequency electromagnetic signals known as millimeter waves.</description>
                    <link>https://phys.org/news/2026-08-rainbow-chip-6g-networks-precision.html</link>
                    <category>Optics &amp; Photonics</category>                    <pubDate>Fri, 21 Aug 2026 10:00:03 EDT</pubDate>
                    <guid isPermaLink="false">news706524302</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/rainbow-on-a-chip-brea.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>A new approach to building noise-resistant quantum sensors</title>
                    <description>Quantum sensors, devices that collect measurements by exploiting quantum-mechanical phenomena, could potentially detect extremely weak magnetic, gravitational and electromagnetic signals with greater sensitivity than classical sensors. Some quantum sensors leverage entanglement, a phenomenon that prompts distant particles to become so strongly linked that the physical state of one particle dictates the state of the others.</description>
                    <link>https://phys.org/news/2026-08-approach-noise-resistant-quantum-sensors.html</link>
                    <category>Quantum Physics</category>                    <pubDate>Tue, 18 Aug 2026 08:00:07 EDT</pubDate>
                    <guid isPermaLink="false">news705926571</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/a-new-approach-to-buil-1.jpg" width="90" height="90" />
                                    </item>
                            <item>
                    <title>Molecular electromagnetic sensor may enable remote-controlled gene therapy</title>
                    <description>The deoxyribonucleic acid (DNA) of living organisms contains regulatory elements that control when, where and to what extent specific genes are turned on or off. They can be co-opted to create &quot;gene switches&quot; that hold significant potential for understanding gene expression and for therapeutic applications, particularly for the noninvasive treatment or management of genetic disorders.</description>
                    <link>https://phys.org/news/2026-08-molecular-electromagnetic-sensor-enable-remote.html</link>
                    <category>Biotechnology</category>                    <pubDate>Mon, 17 Aug 2026 19:40:04 EDT</pubDate>
                    <guid isPermaLink="false">news706196881</guid>
                                            <media:thumbnail url="https://scx1.b-cdn.net/csz/news/tmb/2026/researchers-develop-in-2.jpg" width="90" height="90" />
                                    </item>
                        </channel>
</rss>