collaborators

5 papers

physics.atom-ph2026

Ambiguity-Free Inertial Measurement with Multi-Wavelength Atom Interferometry

Wei-Chen Jia, Yue Xin, Ke Shen +1

White-light interferometry enables ambiguity-free localization by synthesizing interference envelopes from multiple optical wavelengths, but no analogous capability has been realiz…

physics.atom-ph2026

Spectral-Domain Coherent Control of Broadband Raman Coupling in Atom Interferometry

Sheng-Zhe Wang, Wei-Chen Jia, Yue Xin +3

The performance of atom interferometers is commonly limited by the finite spectral acceptance of atomic beam splitters and mirrors, which restricts efficient coupling to atoms with…

physics.atom-ph2026

Closed-loop dual-channel atomic beam interferometry beyond the half-fringe limit

Wei-Chen Jia, Yue Xin, Ke Shen +5

Atom interferometric inertial sensors offer exceptional sensitivity but are fundamentally constrained by the periodic phase response of matter-wave interference, which imposes an i…

quant-ph2025

Improved error correction with leakage reduction units built into qubit measurement in a superconducting quantum processor

Yuejie Xin, Sean L. M. van der Meer, Marc Serra-Peralta +5

Leakage to non-computational states is a source of correlated errors in both time and space that limits the effectiveness of quantum error correction (QEC) with superconducting cir…

physics.atom-ph2025

A Continuous Dual-Axis Atomic Interferometric Inertial Sensor

Pei-Qiang Yan, Wei-Chen Jia, Ke Shen +2

We present an interferometric inertial sensor that utilizes two counter-propagating atomic beams with transverse two-dimensional cooling. By employing three parallel and spatially…