activity
20172021
most citedClock frequency estimation under spontaneous emission

3 citations · 4 across the 4 of their papers we have counts for

collaborators

11 papers

quant-ph2021

Heisenberg-limited Frequency Estimation via Driving through Quantum Phase Transitions

Min Zhuang, Hongtao Huo, Yuxiang Qiu +3

High-precision frequency estimation is an ubiquitous issue in fundamental physics and a critical task in spectroscopy. Here, we propose a quantum Ramsey interferometry to realize h…

quant-ph2021

Bayesian Phase Estimation via Active Learning

Yuxiang Qiu, Min Zhuang, Jiahao Huang +1

Bayesian estimation approaches, which are capable of combining the information of experimental data from different likelihood functions to achieve high precisions, have been widely…

quant-ph2020

Temporal Spinwave Fabry-Perot Interferometry via Coherent Population Trapping

Ruihuan Fang, Chengyin Han, Xunda Jiang +6

Ramsey spectroscopy via coherent population trapping (CPT) is essential in precision measurements. The conventional CPT-Ramsey fringes contain numbers of almost identical oscillati…

quant-ph2020

Quantum metrology via chaos in a driven Bose-Josephson system

Wenjie Liu, Min Zhuang, Bo Zhu +2

Entanglement preparation and signal accumulation are essential for quantum parameter estimation, which pose significant challenges to both theories and experiments. Here, we propos…

physics.atom-ph2019

Simultaneous measurement of DC and AC magnetic fields at the Heisenberg limit

Min Zhuang, Jiahao Huang, Chaohong Lee

High-precision magnetic field measurement is an ubiquitous issue in physics and a critical task in metrology. Generally, magnetic field has DC and AC components and it is hard to e…

quant-ph2018

Symmetry-Protected Quantum Adiabatic Evolution in Spontaneous Symmetry-Breaking Transitions

Min Zhuang, Jiahao Huang, Yongguan Ke +1

Quantum adiabatic evolution, an important fundamental concept inphysics, describes the dynamical evolution arbitrarily close to the instantaneous eigenstate of a slowly driven Hami…