Recent Articles

Fast and sensitive readout of a semiconductor quantum dot using an in situ microwave resonator with enhanced gate lever arm

Tim J. Wilson and Hong-Wen Jiang

Phys. Rev. Applied 26, 024040 (2026) - Published 14 August, 2026

Quantum dot–based spin qubits require ultrafast, high-fidelity charge readout for quantum error correction and real-time feedback. Improving readout sensitivity has often required complex high-impedance resonators or specialized circuits. This work shows that optimizing a gate lever arm directly coupled to an in situ superconducting microwave resonator dramatically enhances readout sensitivity, achieving integration times at the tens of nanoseconds scale without the use of high-impedance devices, and revealing how readout noise evolves across distinct physical regimes. These results show a practical route toward faster, more scalable architectures for fault-tolerant quantum computing.

Grazing-incidence resonant elastic x-ray scattering of skyrmion lattices in bulk MnSi

Jingyi Chen, Andreas Bauer, Christian Pfleiderer, Gerrit van der Laan, Thorsten Hesjedal, and Shilei Zhang

Phys. Rev. Applied 26, 024039 (2026) - Published 14 August, 2026

Efficient single-atom transfer from an optical conveyor belt to a tightly confined optical tweezer

Lei Xu, Ling-Xiao Wang, Guang-Jie Chen, Zhu-Bo Wang, Xin-Biao Xu, Guang-Can Guo, Chang-Ling Zou, and Guo-Yong Xiang

Phys. Rev. Applied 26, 024037 (2026) - Published 14 August, 2026

Persistent-current-biased and current-actuated switch for superconducting circuits

Ziyi Zhao, Eva Gurra, Michael R. Vissers, and K. W. Lehnert

Phys. Rev. Applied 26, 024036 (2026) - Published 14 August, 2026

Thermoelasticity-induced interferometer-displacement noise from the test mass in spaceborne gravitational-wave detectors

Xingyu Yan, Fulong Wei, Shen Zhan, and Zebing Zhou

Phys. Rev. Applied 26, 024035 (2026) - Published 13 August, 2026

Most informative Cramér-Rao bound for quantum two-parameter estimation with pure-state probes

Simon K. Yung, C. M. Yung, Lorcán O. Conlon, and Syed M. Assad

Phys. Rev. Applied 26, 024034 (2026) - Published 13 August, 2026

Semiconductor-quality pyrite FeS2 from iron ore

Yeon Lee, Jennifer T. Mitchell, Caitlyn Komar, Matt Mlinar, Jestos Taguta, George Hudak, and Chris Leighton

Phys. Rev. Applied 26, 024033 (2026) - Published 13 August, 2026

Pyrite FeS2 is an earth-abundant, low-cost semiconductor with application potential, particularly if it can be synthesized at high quality from natural resources. This study demonstrates that common iron ores can be converted directly to semiconductor-quality FeS2 without additional purification, because unexpected purification occurs during processing and few elements effectively dope the material. The resulting single crystals boast carrier densities down to 1016 cm3 and mobilities up to 100 cm2V1s1, similar to those grown from high-purity precursors. This could unlock an attractive new revenue stream for an abundant natural resource.

Mixed-state surface impedance of Nb-Ti: Flux flow, pinning, and creep

Nicola Pompeo, Andrea Alimenti, Davide Ford, Gianluca Ghigo, Alessandro Magalotti, Giovanni Marconato, Cristian Pira, Kostiantyn Torokhtii, Pablo Vidal García, and Enrico Silva

Phys. Rev. Applied 26, 024032 (2026) - Published 13 August, 2026

Size-dependent particle patterning in the Fresnel region of standing surface acoustic wave tweezers

Liang Shen, Andrew Moomaw, and Zhenhua Tian

Phys. Rev. Applied 26, 024031 (2026) - Published 12 August, 2026

Multimodal direct-ray transmission for enhanced point-to-point wireless-channel capacity

Felipe Vico, Jose I. Herranz-Herruzo, Miguel Ferrando-Rocher, and Eva Antonino-Daviu

Phys. Rev. Applied 26, 024030 (2026) - Published 12 August, 2026

Few-MHz bandwidth tunable optical filter based on a fiber-ring resonator

Gabriele Maron, Anton Bölian, Xin-Xin Hu, Luke Masters, Arno Rauschenbeutel, and Jürgen Volz

Phys. Rev. Applied 26, 024029 (2026) - Published 12 August, 2026

Establishing the magnetoelastic origin of spin-wave routing through focused-ion-beam patterning

Felix Naunheimer, Johannes Greil, Valentin Ahrens, Levente Maucha, Ádám Papp, György Csaba, and Markus Becherer

Phys. Rev. Applied 26, 024028 (2026) - Published 12 August, 2026

Spin waves hold promise for compact analog computing, but routing them via focused-ion-beam irradiation in yttrium iron garnet is hindered by a nonmonotonic wavelength response to ion dose. By combining atomic force microscopy and time-resolved magneto-optical Kerr effect microscopy with analytical, ion-damage, and micromagnetic modeling, this study links this response to the progression from elastic and plastic deformation to partial amorphization and the resulting magnetoelastic fields. This physical understanding will enable predictably engineered irradiation-defined spin-wave landscapes and future graded-index magnetoelastic magnonic devices.

Integral variable-range hopping for modeling electrical transport in disordered systems

Chenxin Qin, Chenyan Wang, Mouyang Cheng, and Ji Chen

Phys. Rev. Applied 26, 024027 (2026) - Published 12 August, 2026

High-efficiency thermophotovoltaic selective emitter enabled by a one-dimensional highly doped silicon grating and a Si/SiO2 photonic crystal stack

Maha Ben Rhouma and Brahim Guizal

Phys. Rev. Applied 26, 024026 (2026) - Published 12 August, 2026

Erratum: High-performance chiral mirrors by twisted anisotropic photonic crystals [Phys. Rev. Applied 23, 064027 (2025)]

Andrea Alessandrini, Leone di Mauro Villari, Luca Assogna, Matteo Silvestri, Matteo Venturi, Carino Ferrante, Paola Benassi, Davide Tedeschi, and Andrea Marini

Phys. Rev. Applied 26, 029901 (2026) - Published 11 August, 2026

Distinguishing types of correlated errors in superconducting qubits

H. P. Binney, H. D. Pinckney, K. Azar, P. M. Harrington, S. Jha, M. Li, J. Yang, F. Contipelli, R. DePencier Piñero, M. Gingras, B. M. Niedzielski, H. Stickler, M. E. Schwartz, J. A. Grover, M. Hays, K. Serniak, J. A. Formaggio, and W. D. Oliver

Phys. Rev. Applied 26, 024025 (2026) - Published 11 August, 2026

Superconducting qubits are promising for quantum computing, but their performance is hindered by correlated errors from environmental factors like ionizing radiation and cryocooler vibrations. The authors distinguish these error types in the same device by their distinct features, and use accelerometers to directly link specific errors to pulse tube vibrations. This study also reveals that qubits engineered to resist radiation are protected against these vibration-induced errors as well. Identifying the sources of correlated errors will inform future mitigation strategies for building more robust quantum computers.

Dynamic imaging of periodic structures using extreme-ultraviolet scatterometry

Brendan McBennett, Michael Tanksalvala, Emma E. Nelson, Theodore H. Culman, Yunhao Li, Jiayi Liu, Ethan Berk, Albert Beardo, James Harford, Justin M. Shaw, Henry C. Kapteyn, Margaret M. Murnane, and Joshua L. Knobloch

Phys. Rev. Applied 26, 024024 (2026) - Published 11 August, 2026

Linear optical fan-out gates using fewer ancillary single photons with enhanced success probability

Wen-Qiang Liu and Hai-Rui Wei

Phys. Rev. Applied 26, 024023 (2026) - Published 11 August, 2026

Analysis of fluorescence-fluctuation spectroscopy combining autocorrelation and time-integrated cumulants in confocal microscopy

Pierre Leclerc, Henri Truong, Gérard Colas des Francs, Laurent Héliot, and Aymeric Leray

Phys. Rev. Applied 26, 024022 (2026) - Published 10 August, 2026

Lemniscate phase trajectories for high-fidelity preparation of GHZ states in trapped-ion chains

Evgeny V. Anikin, Andrey Chuchalin, Dimitrii Donchenko, Olga Lakhmanskaya, and Kirill Lakhmanskiy

Phys. Rev. Applied 26, 024021 (2026) - Published 10 August, 2026

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