papers

Publications (31)

quant-ph2012

Engineering W-type steady states for three atoms via dissipation in an optical cavity

Xin-Yu Chen, Li-Tuo Shen, Zhen-Biao Yang +2

We propose a scheme for the dissipative preparation of W-type entangled steady-states of three atoms trapped in an optical cavity. The scheme is based on the competition between th…

quant-ph2022

Critical quantum sensing based on the Jaynes-Cummings model with a squeezing drive

Jia-Hao Lü, Wen Ning, Xin Zhu +4

Quantum sensing improves the accuracy of measurements of relevant parameters by exploiting the unique properties of quantum systems. The divergent susceptibility of physical system…

quant-ph2023

Criticality-Enhanced Quantum Sensing in the Anisotropic Quantum Rabi Model

Xin Zhu, Jia-Hao Lü, Wen Ning +4

Quantum systems that undergo quantum phase transitions exhibit divergent susceptibility and can be exploited as probes to estimate physical parameters. We generalize the dynamic fr…

quant-ph2014

Ground state of the asymmetric Rabi model in the ultrastrong coupling regime

Li-Tuo Shen, Zhen-Biao Yang, Mei Lu +2

We study the ground states of the single- and two-qubit asymmetric Rabi models, in which the qubit-oscillator coupling strengths for the counterrotating-wave and corotating-wave in…

quant-ph2013

Using shortcut to adiabatic passage for the ultrafast quantum state transfer in cavity QED system

Mei Lu, Li-Tuo Shen, Yan Xia +1

We propose an alternative scheme to implement the quantum state transfer between two three-level atoms based on the invariant-based inverse engineering in cavity quantum electronic…

quant-ph2014

Adiabatic approximation for three qubits ultrastrongly coupled to a harmonic oscillator

Li-Tuo Shen, Rong-Xin Chen, Huai-Zhi Wu +1

We study the system involving mutual interaction between three qubits and an oscillator within the ultrastrong coupling regime. We apply adiabatic approximation approach to explore…

quant-ph2014

Shortcuts to adiabatic passage for population transfer and maximum entanglement creation between two atoms in a cavity

Mei Lu, Yan Xia, Li-Tuo Shen +2

We use the approach of "transitionless quantum driving" proposed by Berry to construct shortcuts to the population transfer and the creation of maximal entanglement between two $Λ…

quant-ph2018

Quantum state engineering by periodical two-step modulation in atomic system

Zhi-Cheng Shi, Du Ran, Li-Tuo Shen +2

By periodical two-step modulation, we demonstrate that the dynamics of multilevel system can still evolve even in multiple large detunings regime, and provide the effective Hamilto…

quant-ph2014

Electromagnetically induced transparency with controlled van der Waals interaction

Huaizhi Wu, Meng-Meng Bian, Li-Tuo Shen +3

We study the electromagnetically induced transparency (EIT) effect with two individually addressed four-level Rydberg atoms subjected to the interatomic van der Waals interaction.…

quant-ph2011

Steady-State Entanglement for Distant Atoms by Dissipation in Coupled Cavities

Li-Tuo Shen, Xin-Yu Chen, Zhen-Biao Yang +2

We propose a scheme for the generation of entangled states for two atoms trapped in separate cavities coupled to each other. The scheme is based on the competition between the unit…

quant-ph2018

Robust Rydberg gate via Landau-Zener control of Förster resonance

Xi-Rong Huang, Zong-Xing Ding, Chang-Sheng Hu +4

In this paper, we propose a scheme to implement the two-qubit controlled-Z gate via the Stark-tuned Förster interaction of Rydberg atoms, where the Förster defect is driven by a…

quant-ph2014

Quantum phase transition of polaritonic excitations in a multi-excitation coupled array

Li-Tuo Shen, Rong-Xin Chen, Huai-Zhi Wu +3

We analyze the quantum phase transition-like behavior in the lowest energy state of a two-site coupled atom-cavity system, where each cavity contains one atom but the total excitat…

quant-ph2014

Distributed manipulation of two-qubit entanglement with coupled continuous variables

Li-Tuo Shen, Rong-Xin Chen, Huai-Zhi Wu +1

We study the dynamics of two qubits separately sent through two coupled resonators, each initially containing a coherent state field. We present analytical arguments and numerical…

quant-ph2012

Distributed entanglement induced by dissipative bosonic media

Li-Tuo Shen, Xin-Yu Chen, Zhen-Biao Yang +2

We describe a scheme with analytic result that allows to generate steady-state entanglement for two atoms over a dissipative bosonic medium. The resonant coupling between the media…

quant-ph2021

Robust single-qubit gates by composite pulses in three-level systems

Zhi-Cheng Shi, Hai-Ning Wu, Li-Tuo Shen +3

Composite pulses are an efficient tool for robust quantum control. In this work, we derive the form of the composite pulse sequence to implement robust single-qubit gates in a thre…

quant-ph2016

Enhancement of entanglement in distant micromechanical mirrors using parametric interactions

Chang-Sheng Hu, Xi-Rong Huang, Li-Tuo Shen +2

We theoretically investigate the stability of a two cascaded cavity optomechanical system with optical parametric amplifiers (OPAs) inside the two coupled cavities, and study the s…

quant-ph2019

Manifestation of classical nonlinear dynamics in optomechanical entanglement with a parametric amplifier

Chang-Sheng Hu, Li-Tuo Shen, Zhen-Biao Yang +3

Cavity optomechanical system involving an optical parametric amplifier (OPA) can exhibit rich classical and quantum dynamical behaviors. By simply modulating the frequency of the l…

quant-ph2015

Resonator-Assisted Quantum Bath Engineering of a Flux Qubit

Xian-Peng Zhang, Li-Tuo Shen, Zhang-Qi Yin +2

We demonstrate quantum bath engineering for preparation of any orbital state with controllable phase factor of a superconducting flux qubit assisted by a microwave coplanar wavegui…

quant-ph2012

Control of two-atom entanglement with two thermal fields in coupled cavities

Li-Tuo Shen, Zhen-Biao Yang, Huai-Zhi Wu +2

The dynamical evolution of a quantum system composed of two coupled cavities, each containing a two-level atom and a single-mode thermal field, is investigated under different cond…

quant-ph2023

Robust transitionless quantum driving: Concatenated approach

Zhi-Cheng Shi, Cheng Zhang, Li-Tuo Shen +3

We propose a concatenated approach for implementing transitionless quantum driving regardless of adiabatic conditions while being robustness with respect to all kinds of systematic…

quant-ph2015

Quantum delayed-choice experiment with a beam splitter in a quantum superposition

Shi-Biao Zheng, You-Peng Zhong, Kai Xu +7

A quantum system can behave as a wave or as a particle, depending on the experimental arrangement. When for example measuring a photon using a Mach-Zehnder interferometer, the phot…

quant-ph2024

Quantum Geometric Tensor and Critical Metrology in the Anisotropic Dicke Model

Xin Zhu, Jia-Hao Lü, Wen Ning +3

We investigate the quantum phase transition in the anisotropic Dicke model through an examination of the quantum geometric tensor of the ground state. In this analysis, two distinc…

quant-ph2021

External control of qubit-photon interaction and multi-qubit reset in a dissipative quantum network

Xian-Peng Zhang, Li-Tuo Shen, Zhang-Qi Yin +3

A quantum network is a promising quantum many-body system because of its tailored geometry and controllable interaction. Here, we propose an external control scheme for the qubit-p…

quant-ph2012

Distributed phase-covariant cloning with atomic ensembles via quantum Zeno dynamics

Li-Tuo Shen, Huai-Zhi Wu, Zhen-Biao Yang

We propose an interesting scheme for distributed orbital state quantum cloning with atomic ensembles based on the quantum Zeno dynamics. These atomic ensembles which consist of ide…

quant-ph2023

Quantum metric and metrology with parametrically-driven Tavis-Cummings models

Jia-Hao Lü, Pei-Rong Han, Wen Ning +5

We study the quantum metric in a driven Tavis-Cummings model, comprised of multiple qubits interacting with a quantized photonic field. The parametrical driving of the photonic fie…

quant-ph2023

Observation of a superradiant phase transition with emergent cat states

Ri-Hua Zheng, Wen Ning, Ye-Hong Chen +15

Superradiant phase transitions (SPTs) are important for understanding light-matter interactions at the quantum level, and play a central role in criticality-enhanced quantum sensin…

quant-ph2018

Dissipative entanglement preparation via Rydberg antiblockade and Lyapunov control

Zong-Xing Ding, Chang-Sheng Hu, Li-Tuo Shen +3

Preparation of entangled steady states via dissipation and pumping in Rydberg atoms has been recently found to be useful for quantum information processing. The driven-dissipative…

quant-ph2013

Ground state of three qubits coupled to a harmonic oscillator with ultrastrong coupling

Li-Tuo Shen, Zhen-Biao Yang, Rong-Xin Chen

We study the Rabi model composed of three qubits coupled to a harmonic oscillator without involving the rotating-wave approximation. We show that the ground state of the three-qubi…

quant-ph2024

Three-state coherent control using narrowband and passband sequences

Cheng Zhang, Li-Tuo Shen, Jie Song +2

In this work, we propose a comprehensive design for narrowband and passband composite pulse sequences by involving the dynamics of all states in the three-state system. The design…

quant-ph2019

Generation and stabilization of entangled coherent states for the vibrational modes of a trapped ion

Zhi-Rong Zhong, Xin-Jie Huang, Zhen-Biao Yang +2

We propose a scheme for preparation of entangled coherent states for the motion of an ion in a two-dimensional anisotropic trap. In the scheme, the ion is driven by four laser beam…

quant-ph2013

Quantum teleportation and computation with Rydberg atoms in an optical lattice

Huaizhi Wu, Zhen-Biao Yang, Li-Tuo Shen +1

Neutral atoms excited to Rydberg states can interact with each other via dipole-dipole interaction, which results in a physical phenomenon named Rydberg blockade mechanism. The eff…