collaborators

7 papers

physics.optics2026

Physically Grounded Monocular Depth via Nanophotonic Wavefront Encoding

Bingxuan Li, Jiahao Wu, Yuan Xu +6

Depth foundation models (DFMs) offer strong learned priors for 3D perception from single RGB images but lack physical depth cues, leading to ambiguities in metric scale. We introdu…

physics.class-ph2026

A Magnetic Torsional Pendulum for Exploring Forced Resonance, Parametric Resonance, and Parametric Amplification

Wenqing Xie, Jiahao Wu, Yujun Shi

We present a magnetic torsional pendulum that provides a unified experimental platform for investigating forced resonance, parametric resonance, and degenerate parametric amplifica…

physics.atom-ph2026

A Mid-Infrared Platform Based on Strontium Tweezer Arrays

Aaron Holman, Ximo Sun, Bojeong Seo +8

Subwavelength atomic tweezer arrays, in which atoms can be positioned at distances smaller than their emission wavelength, have been proposed as a versatile platform to study colle…

physics.class-ph2026

Revisiting Koehler's experiment of measuring the ratio of the specific heats of air by self-sustained oscillations

Yujun Shi, Xiaoting Fen

We revisit Koehler's experiment, a clever modification of Ruchardt's experiment designed to measure the ratio of specific heats of gas. However, the lengthy and dense analysis shar…

quant-ph2025

Jenga-Krotov algorithm: Efficient compilation of multi-qubit gates for exchange-only qubits

Jiahao Wu, Guanjie He, Wenyuan Zhuo +2

Exchange-only (EO) qubits, implemented in triple-quantum-dot systems, offer a compelling platform for scalable semiconductor-based quantum computing by enabling universal control t…

physics.atom-ph2025

Trapping of Single Atoms in Metasurface Optical Tweezer Arrays

Aaron Holman, Yuan Xu, Ximo Sun +6

Optical tweezer arrays have emerged as a key experimental platform for quantum computation, quantum simulation, and quantum metrology, enabling unprecedented levels of control over…