Highlights

Demonstrating Quantum Microscopic Reversibility Using Coherent States of Light

Marco Bellini, Hyukjoon Kwon, Nicola Biagi, Saverio Francesconi, Alessandro Zavatta, and M. S. Kim

Phys. Rev. Lett. 129, 170604 (2022) - Published 20 October, 2022

A fundamental principle in statistical mechanics called microscopic reversibility has been extended to the quantum world.

Intrinsic Correlation between the Fraction of Liquidlike Zones and the β Relaxation in High-Entropy Metallic Glasses

Y. J. Duan, L. T. Zhang, J. C. Qiao, Yun-Jiang Wang, Y. Yang, T. Wada, H. Kato, J. M. Pelletier, E. Pineda, and D. Crespo

Phys. Rev. Lett. 129, 175501 (2022) - Published 20 October, 2022

Linking the stress relaxation, a macroscopic mechanical behavior, and beta-relaxation, a microscopic relaxation process, in metallic glasses, reveals the intrinsic correlation between the static and dynamic mechanical responses.

Fragmented Cooper Pair Condensation in Striped Superconductors

Alexander Wietek

Phys. Rev. Lett. 129, 177001 (2022) - Published 18 October, 2022

The superconducting condensate in high-temperature cuprate superconductors fragments into multiple Josephson-coupled stripe segments.

In Situ Signature of Cyclotron Resonant Heating in the Solar Wind

Trevor A. Bowen, Benjamin D. G. Chandran, Jonathan Squire, Stuart D. Bale, Die Duan, Kristopher G. Klein, Davin Larson, Alfred Mallet, Michael D. McManus, Romain Meyrand, Jaye L. Verniero, and Lloyd D. Woodham

Phys. Rev. Lett. 129, 165101 (2022) - Published 14 October, 2022

Data from the Parker Solar Probe confirms a long-suspected source of coronal heating.

Quantum Monte Carlo Study of Positron Lifetimes in Solids

K. A. Simula, J. E. Muff, I. Makkonen, and N. D. Drummond

Phys. Rev. Lett. 129, 166403 (2022) - Published 14 October, 2022

A new quantum Monte Carlo approach for computation of positron lifetimes in real crystals yields an improved accuracy compared to previous computations using different techniques.

New Spin-Polarized Electron Source Based on Alkali Antimonide Photocathode

V. S. Rusetsky, V. A. Golyashov, S. V. Eremeev, D. A. Kustov, I. P. Rusinov, T. S. Shamirzaev, A. V. Mironov, A. Yu. Demin, and O. E. Tereshchenko

Phys. Rev. Lett. 129, 166802 (2022) - Published 14 October, 2022

New spin-dependent photoemission properties of alkali antimonide semiconductor cathodes are demonstrated and used to design a novel spin-polarized electron source.

Probing Operator Spreading via Floquet Engineering in a Superconducting Circuit

S. K. Zhao, Zi-Yong Ge, Zhongcheng Xiang, G. M. Xue, H. S. Yan, Z. T. Wang, Zhan Wang, H. K. Xu, F. F. Su, Z. H. Yang, He Zhang, Yu-Ran Zhang, Xue-Yi Guo, Kai Xu, Ye Tian, H. F. Yu, D. N. Zheng, Heng Fan, and S. P. Zhao

Phys. Rev. Lett. 129, 160602 (2022) - Published 13 October, 2022

Floquet engineering has been used to measure out-of-time-order correlators and study operator spreading in a superconducting 10-qubit chain.

First Search for the Absorption of Fermionic Dark Matter with the PandaX-4T Experiment

Linhui Gu et al. (PandaX Collaboration)

Phys. Rev. Lett. 129, 161803 (2022) - Published 13 October, 2022

Researchers have analyzed the first data from a dark matter direct-detection experiment, searching for a form of dark matter known as fermionic dark matter via its absorption by nuclei.

Search for Light Fermionic Dark Matter Absorption on Electrons in PandaX-4T

Dan Zhang et al. (PandaX Collaboration)

Phys. Rev. Lett. 129, 161804 (2022) - Published 13 October, 2022

Results from two leading dark matter experiments—XENONnT and PandaX-4T—rule out an enigmatic signal detected in 2020 and set new constraints on dark matter particle candidates consisting of light fermions, respectively.

Search for New Physics in Electronic Recoil Data from XENONnT

E. Aprile et al. (XENON Collaboration)

Phys. Rev. Lett. 129, 161805 (2022) - Published 13 October, 2022

Results from two leading dark matter experiments—XENONnT and PandaX-4T—rule out an enigmatic signal detected in 2020 and set new constraints on dark matter particle candidates consisting of light fermions, respectively.

Noninvertible Global Symmetries in the Standard Model

Yichul Choi, Ho Tat Lam, and Shu-Heng Shao

Phys. Rev. Lett. 129, 161601 (2022) - Published 12 October, 2022

The Standard Model contains novel hidden symmetries that cannot be described within the usual context of Lie algebras.

Quasicontinuous Exhaust Scenario for a Fusion Reactor: The Renaissance of Small Edge Localized Modes

G. F. Harrer, M. Faitsch, L. Radovanovic, E. Wolfrum, C. Albert, A. Cathey, M. Cavedon, M. Dunne, T. Eich, R. Fischer, M. Griener, M. Hoelzl, B. Labit, H. Meyer, F. Aumayr, The ASDEX Upgrade Team, and The EUROfusion MST1 Team

Phys. Rev. Lett. 129, 165001 (2022) - Published 10 October, 2022

A mechanism for preventing destructive instabilities in magnetically confined plasmas provides a new way for scientists to operate future nuclear-fusion reactors.

Even-Denominator Fractional Quantum Hall State at Filling Factor ν=3/4

Chengyu Wang, A. Gupta, S. K. Singh, Y. J. Chung, L. N. Pfeiffer, K. W. West, K. W. Baldwin, R. Winkler, and M. Shayegan

Phys. Rev. Lett. 129, 156801 (2022) - Published 6 October, 2022

The even-denominator state appears in a 2D quasiparticle system, but researchers still can’t explain its origin.

Scalable Generation of Multiphoton Entangled States by Active Feed-Forward and Multiplexing

Evan Meyer-Scott, Nidhin Prasannan, Ish Dhand, Christof Eigner, Viktor Quiring, Sonja Barkhofen, Benjamin Brecht, Martin B. Plenio, and Christine Silberhorn

Phys. Rev. Lett. 129, 150501 (2022) - Published 5 October, 2022

A new experiment generates entanglement between many photons with a much higher probability than available methods, which could be a boon for quantum information applications.

Persistent Self-Induced Larmor Precession Evidenced through Periodic Revivals of Coherence

H. Sigurdsson, I. Gnusov, S. Alyatkin, L. Pickup, N. A. Gippius, P. G. Lagoudakis, and A. Askitopoulos

Phys. Rev. Lett. 129, 155301 (2022) - Published 4 October, 2022

A polariton condensate can spontaneously rotate, causing it to live significantly longer than individual polaritons would.

Observation of Topological p-Orbital Disclination States in Non-Euclidean Acoustic Metamaterials

Ying Chen, Yuhang Yin, Zhi-Kang Lin, Ze-Huan Zheng, Yang Liu, Jing Li, Jian-Hua Jiang, and Huanyang Chen

Phys. Rev. Lett. 129, 154301 (2022) - Published 3 October, 2022

New experimental work on topological phenomena at defects reveals the nontrivial interplay between the non-Euclidean geometries in real space and the band topology in reciprocal space.

Experimental Evidence of Nonlinear Focusing in Standing Water Waves

Yuchen He, Alexey Slunyaev, Nobuhito Mori, and Amin Chabchoub

Phys. Rev. Lett. 129, 144502 (2022) - Published 28 September, 2022

Researchers create the most realistic rogue waves to date, showing dynamics that follow those expected for extreme waves in more idealized systems.

Emergence of Fermi’s Golden Rule

Tobias Micklitz, Alan Morningstar, Alexander Altland, and David A. Huse

Phys. Rev. Lett. 129, 140402 (2022) - Published 27 September, 2022

Researchers have calculated the likelihood that a quantum state will decay when its evolution is inhibited by a lack of availability of final states.

Quantum Critical Behavior of Entanglement in Lattice Bosons with Cavity-Mediated Long-Range Interactions

Shraddha Sharma, Simon B. Jäger, Rebecca Kraus, Tommaso Roscilde, and Giovanna Morigi

Phys. Rev. Lett. 129, 143001 (2022) - Published 26 September, 2022

Scaling of entanglement entropy can signal the different phase transitions in a two-dimensional quantum many-body system with long-range interactions.

Changing Flows Balance Nutrient Absorption and Bacterial Growth along the Gut

Agnese Codutti, Jonas Cremer, and Karen Alim

Phys. Rev. Lett. 129, 138101 (2022) - Published 23 September, 2022

Fluid dynamics simulations suggest that the varying flow speed inside the small intestine maximizes nutrient absorption while minimizing excess bacteria.

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