activity
20182022
collaborators

6 papers

quant-ph2022

Accessing strongly-coupled systems without compromising them

Xiangjin Kong, Carlos Navarrete-Benlloch, Yue Chang

The last decades have seen a burst of experimental platforms reaching the so-called strong-coupling regime, where quantum coherent effects dominate over incoherent processes such a…

physics.ins-det2021

A novel method to measure the dE/dx resolution of a TPC prototype using 266 nm UV laser

Yiming Cai, Yulan Li, Huirong Qi +4

The specific energy loss (dE/dx) resolution is critical for particle identification and separation in TPC. In connection with the R&D for the TPC at the Circular Electron Positron…

physics.ins-det2021

Feasibility study of TPC detector at high luminosity pole on the circular collider

Zhiyang Yuan, Huirong Qi, Yue Chang +8

With the development of the circular collider, it is necessary to make accurate physics experimental measurements of particle properties at higher luminosity pole. Micro-patter…

quant-ph2019

Quadrupole Effects on Nuclear Magnetic Resonance Gyroscopes

Yue Chang, Shuang-ai Wan, Jie Qin

Nuclear magnetic resonance gyroscopes that detect rotation as a shift in the precession frequency of nuclear spins, have attracted a lot of attentions. Under a feedback-generated d…

quant-ph2018

Reduction of frequency-dependent light shifts in light-narrowing regimes: A study using effective master equations

Yue Chang, Yu-Hao Guo, Jie Qin

Alkali-metal-vapor magnetometers, using coherent precession of polarized atomic spins for magnetic field measurement, have become one of the most sensitive magnetic field detectors…

cond-mat.mtrl-sci2018

Effective spin-orbit models using correlated first-principles wave functions

Yueqing Chang, Lucas K. Wagner

Diffusion Monte Carlo is one of the most accurate scalable many-body methods for solid state systems. However, to date, spin-orbit interactions have not been incorporated into thes…