Recent Articles

Hilbert-Space Ergodicity in Driven Quantum Systems: Obstructions and Designs

Saúl Pilatowsky-Cameo, Iman Marvian, Soonwon Choi, and Wen Wei Ho

Phys. Rev. X 14, 041059 (2024) - Published 6 December, 2024

A dynamical notion of quantum ergodicity provides a framework for exploring the universality of the late-time behavior of driven quantum systems.

Quantum Frequency Combs with Path Identity for Quantum Remote Sensing

D. A. R. Dalvit, T. J. Volkoff, Y.-S. Choi, A. K. Azad, H.-T. Chen, and P. W. Milonni

Phys. Rev. X 14, 041058 (2024) - Published 6 December, 2024

A proposed remote-sensing scheme could potentially probe targets hundreds of kilometers away and uses one of the strangest quantum properties of light.

Semi-Dirac Fermions in a Topological Metal

Yinming Shao, Seongphill Moon, A. N. Rudenko, Jie Wang, Jonah Herzog-Arbeitman, Mykhaylo Ozerov, David Graf, Zhiyuan Sun, Raquel Queiroz, Seng Huat Lee, Yanglin Zhu, Zhiqiang Mao, M. I. Katsnelson, B. Andrei Bernevig, Dmitry Smirnov, Andrew J. Millis, and D. N. Basov

Phys. Rev. X 14, 041057 (2024) - Published 5 December, 2024

Semi-Dirac fermions, which are massless in one 2D direction but possess mass in the other, have so far eluded detection in solids. New experiments reveal their defining feature in the nodal-line metal ZrSiS.

Recovering Quantum Coherence of a Cavity Qubit Coupled to a Noisy Ancilla through Real-Time Feedback

Uri Goldblatt, Nitzan Kahn, Sergey Hazanov, Ofir Milul, Barkay Guttel, Lalit M. Joshi, Daniel Chausovsky, Fabien Lafont, and Serge Rosenblum

Phys. Rev. X 14, 041056 (2024) - Published 5 December, 2024

Continuous monitoring of an ancillary transmon in a superconducting cavity qubit provides real-time feedback that improves the qubit dephasing time by as much as a factor of 20, a promising route for boosting the fidelity of quantum gates.

Cavity-Mediated Collective Emission from Few Emitters in a Diamond Membrane

Maximilian Pallmann, Kerim Köster, Yuan Zhang, Julia Heupel, Timon Eichhorn, Cyril Popov, Klaus Mølmer, and David Hunger

Phys. Rev. X 14, 041055 (2024) - Published 4 December, 2024

A small number of separated, incoherent nitrogen-vacancy centers in diamond can enter the regime of collective photon emission when coupled to a microcavity, establishing a possible platform for steps toward scalable quantum systems.

Time-Dependent Nuclear Energy-Density Functional Theory Toolkit for Neutron Star Crust: Dynamics of a Nucleus in a Neutron Superfluid

Daniel Pęcak, Agata Zdanowicz, Nicolas Chamel, Piotr Magierski, and Gabriel Wlazłowski

Phys. Rev. X 14, 041054 (2024) - Published 3 December, 2024

New open-source software provides a versatile environment for quantum numerical simulations of the dynamics of the inner crust of superfluid neutron stars.

First-Principles Prediction of Structural Distortions in the Cuprates and Their Impact on the Electronic Structure

Zheting Jin and Sohrab Ismail-Beigi

Phys. Rev. X 14, 041053 (2024) - Published 2 December, 2024

A study of how structural symmetry breaking impacts key structural, electronic, and magnetic properties in the cuprate BSCCO resolves several long-standing puzzles in this intriguing superconducting material.

Assessing the Ubiquity of Bloch Domain Walls in Ferroelectric Lead Titanate Superlattices

Edoardo Zatterin, Petr Ondrejkovic, Louis Bastogne, Céline Lichtensteiger, Ludovica Tovaglieri, Daniel A. Chaney, Alireza Sasani, Tobias Schülli, Alexei Bosak, Steven Leake, Pavlo Zubko, Philippe Ghosez, Jirka Hlinka, Jean-Marc Triscone, and Marios Hadjimichael

Phys. Rev. X 14, 041052 (2024) - Published 26 November, 2024

An investigation of domain walls in ferroelectric materials unveils the complexity of their structure and sets the stage for similar studies in other materials, with the aim of leveraging domain walls in future nanoelectronics.

Maximum Entropy Principle in Deep Thermalization and in Hilbert-Space Ergodicity

Daniel K. Mark, Federica Surace, Andreas Elben, Adam L. Shaw, Joonhee Choi, Gil Refael, Manuel Endres, and Soonwon Choi

Phys. Rev. X 14, 041051 (2024) - Published 25 November, 2024

The maximum entropy principle—a central assumption behind statistical physics—holds much more broadly and strongly in quantum systems than previously considered.

Realization of High-Fidelity CZ Gate Based on a Double-Transmon Coupler

Rui Li, Kentaro Kubo, Yinghao Ho, Zhiguang Yan, Yasunobu Nakamura, and Hayato Goto

Phys. Rev. X 14, 041050 (2024) - Published 21 November, 2024

The first realization of an innovative—but until now, only theoretical—way to couple transmon-based qubits provides high fidelity in quantum gates, paving the way for a novel building block for superconducting quantum processors.

High-Coherence Kerr-Cat Qubit in 2D Architecture

Ahmed Hajr, Bingcheng Qing, Ke Wang, Gerwin Koolstra, Zahra Pedramrazi, Ziqi Kang, Larry Chen, Long B. Nguyen, Christian Jünger, Noah Goss, Irwin Huang, Bibek Bhandari, Nicholas E. Frattini, Shruti Puri, Justin Dressel, Andrew N. Jordan, David I. Santiago, and Irfan Siddiqi

Phys. Rev. X 14, 041049 (2024) - Published 20 November, 2024

Kerr-cat qubits are promising for practical quantum computing. A new 2D implementation introduces an efficient, strong light-matter coupling scheme for stabilization, leading to improved coherence and universal control.

Observation of Robust One-Dimensional Edge Channels in a Three-Dimensional Quantum Spin Hall Insulator

Shuikang Yu, Junze Deng, Wenhao Liu, Yunmei Zhang, Yiming Sun, Nikhil Dhale, Sheng Li, Wanru Ma, Zhuying Wang, Ping Wu, Zuowei Liang, Xuechen Zhang, Bing Lv, Zhijun Wang, Zhenyu Wang, and Xianhui Chen

Phys. Rev. X 14, 041048 (2024) - Published 19 November, 2024

Evidence of helical edge states in the layered crystal α-Bi4I4 suggests that this material is not a trivial insulator, as predicted, but a new phase of matter dubbed a 3D quantum spin Hall insulator.

Furutsu-Novikov–like Cross-Correlation–Response Relations for Systems Driven by Shot Noise

Jakob Stubenrauch and Benjamin Lindner

Phys. Rev. X 14, 041047 (2024) - Published 18 November, 2024

Model-independent relations between fluctuation and response statistics for systems driven by random pulses, derived for the first time, could have applications for collective neural dynamics and single photon detection.

Cooling Trapped Ions with Phonon Rapid Adiabatic Passage

M. I. Fabrikant, P. Lauria, I. S. Madjarov, W. C. Burton, and R. T. Sutherland

Phys. Rev. X 14, 041046 (2024) - Published 18 November, 2024

A new technique for cooling trapped ions does so in a fraction of the time required with traditional methods, all without the need for changing out existing hardware.

Local Density Approximation for Excited States

Tim Gould and Stefano Pittalis

Phys. Rev. X 14, 041045 (2024) - Published 15 November, 2024

The ground states of homogeneous electron gases have been used to predict material properties for nearly a century. A new formulation extends this to excited states.

Erratum: Spin-Group Symmetry in Magnetic Materials with Negligible Spin-Orbit Coupling [Phys. Rev. X 12, 021016 (2022)]

Pengfei Liu, Jiayu Li, Jingzhi Han, Xiangang Wan, and Qihang Liu

Phys. Rev. X 14, 049901 (2024) - Published 14 November, 2024

Understanding and Controlling the Formation of Nonradiative Defects in Blue Organic Triplet Emitters

Haonan Zhao, Boning Qu, and Stephen R. Forrest

Phys. Rev. X 14, 041044 (2024) - Published 14 November, 2024

A new theoretical understanding of what shortens the lifetime of blue phosphorescent organic LEDs paves the way for improving those lifetimes and enabling widespread adoption in digital displays.

Broad Instantaneous Bandwidth Microwave Spectrum Analyzer with a Microfabricated Atomic Vapor Cell

Yongqi Shi (石永麒), Thomas Ruster, Melvyn Ho, Sylvain Karlen, Jacques Haesler, and Philipp Treutlein

Phys. Rev. X 14, 041043 (2024) - Published 13 November, 2024

A novel type of real-time microwave spectrum analyzer, using atoms as microscopic antennas, has the potential to achieve a much higher bandwidth than current analyzers.

Bell Test of Quantum Entanglement in Attosecond Photoionization

Marco Ruberti, Vitali Averbukh, and Florian Mintert

Phys. Rev. X 14, 041042 (2024) - Published 13 November, 2024

A proposed test of quantum entanglement in photoionization experiments offers a way to directly detect this overlooked yet crucial aspect of attosecond physics.

Spectral Signatures of Nontrivial Topology in a Superconducting Circuit

L. Peyruchat, R. H. Rodriguez, J.-L. Smirr, R. Leone, and Ç. Ö. Girit

Phys. Rev. X 14, 041041 (2024) - Published 12 November, 2024

Spectroscopy reveals remarkable topological properties of a superconducting circuit that could inspire the design of more robust qubits.

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