activity
20162024
most citedFast quantum state engineering via universal SU(2) transformation

52 citations · 142 across the 6 of their papers we have counts for

collaborators

8 papers

quant-ph2024★ 7 cited

Preparation of high fidelity entangled cat states with composite pulses

Ge-Ge Gu, Dong-Sheng Li, Ye-Hong Chen +2

We propose a protocol for the preparation of high-fidelity entangled cat states with composite pulses. The physical model contains two Kerr-nonlinear resonators and a cavity. By pr…

quant-ph2018★ 12 cited

Shortcut Scheme for One-Step Implementation of a Three-Qubit Nonadiabatic Holonomic Gate

Bi-Hua Huang, Yi-Hao Kang, Zhi-Cheng Shi +2

Nonadiabatic holonomic quantum computation has attracted increasing interest because of its robustness. In this paper, based on the shortcuts to adiabaticity (STA), we propose a sc…

quant-ph2017★ 14 cited

Improving shortcuts to non-Hermitian adiabaticity for fast population transfer in open quantum systems

Ye-Hong Chen, Qi-Cheng Wu, Bi-Hua Huang +3

It is still a challenge to experimentally realize shortcuts to adiabaticity (STA) for a non-Hermitian quantum system since a non-Hermitian quantum system's counterdiabatic driving…

quant-ph2017★ 52 cited

Fast quantum state engineering via universal SU(2) transformation

Bi-Hua Huang, Yi-Hao Kang, Ye-Hong Chen +3

We introduce a simple yet versatile protocol to inverse engineer the time-dependent Hamiltonian in two- and three level systems. In the protocol, by utilizing a universal SU(2) tra…

quant-ph2017★ 43 cited

Complete Bell-state analysis for superconducting-quantum-interference-device qubits with transitionless tracking algorithm

Yi-Hao Kang, Ye-Hong Chen, Zhi-Cheng Shi +3

In this paper, we propose a protocol for complete Bell-state analysis for two superconducting-quantum-interference-device qubits. The Bell-state analysis could be completed by usin…

quant-ph2017★ 14 cited

Invariant-based pulse design for three-level systems without the rotating-wave approximation

Yi-Hao Kang, Ye-Hong Chen, Bi-Hua Huang +2

In this paper, a scheme is put forward to design pulses which drive a three-level system based on the reverse engineering with Lewis-Riesenfeld invariant theory. The scheme can be…