activity
20162023
most citedFast adiabatic quantum state transfer and entanglement generation between two atoms via dressed states

1 citations · 2 across the 6 of their papers we have counts for

collaborators

6 papers

quant-ph2023

Quantum parametric amplifiation of phonon-mediated magnon-spin interaction

Yan Wang, Hui-Lai Zhang, Jin-Lei Wu +5

The recently developed hybrid magnonics provides new opportunities for advances in both the study of magnetism and the development of quantum information processing. However, engin…

quant-ph2023

Robust beam splitter with fast quantum state transfer through a topological interface

Jia-Ning Zhang, Jin-Xuan Han, Jin-Lei Wu +2

The Su-Schrieffer-Heeger (SSH) model, commonly used for robust state transfers through topologically protected edge pumping, has been generalized and exploited to engineer diverse…

quant-ph20211 cited

Enhanced phonon blockade in a weakly-coupled hybrid system via mechanical parametric amplification

Yan Wang, Jin-Lei Wu, Jin-Xuan Han +3

We propose how to achieve strong phonon blockade (PB) in a hybrid spin-mechanical system in the weak-coupling regime. We demonstrate the implementation of magnetically-induced two-…

quant-ph2016

Transitionless-based shortcuts for rapidly generating two-atom 3D entanglement

Rui Peng, Yue Zheng, Si-Wen Liu +3

An experimentally feasible scheme is proposed for rapidly generating two-atom three-dimensional (3D) entanglement with one step. As one technique of shortcuts to adiabaticity, tran…

quant-ph2016

Dressed-state scheme for a fast CNOT gate

Jin-Lei Wu, Xin Ji, Shou Zhang

A highly feasible dressed-state scheme, which greatly speeds up the adiabatic population transfer of a quantum system, is applied for implementing a fast CNOT gate in a cavity QED…

quant-ph20161 cited

Fast adiabatic quantum state transfer and entanglement generation between two atoms via dressed states

Jin-Lei Wu, Xin Ji, Shou Zhang

Recently, a new method, which can significantly speed up adiabatic quantum state transfer by using dressed states, was proposed by Baksic \emph{et~al.} [Phys. Rev. Lett. \textbf{11…