7 papers
Dissipative Phase Transition in a Parametrically Amplified Quantum Rabi Model with Two-photon decay
Mingjian Zhu, Han Pu
We investigate dissipative phase transitions (DPTs) in a parametrically amplified open quantum Rabi model (QRM) with both single- and two-photon decay. In the classical oscillator…
Electronic excitation of ultrafast collective amorphous-amorphous transitions in glassy phase-change material
Yingpeng Qi, Nianke Chen, Zhihui Zhou +10
The intrinsic nature of glass states and glass transitions remain a fundamental open question in condensed-matter physics and materials science. The key to solving the glass transi…
Experimental Realization of Thermal Reservoirs with Tunable Temperature in a Trapped-Ion Spin-Boson Simulator
Visal So, Mingjian Zhu, Midhuna Duraisamy Suganthi +5
We propose and demonstrate an experimental scheme to engineer thermal baths with independently tunable temperatures and dissipation rates for the motional modes of a trapped-ion sy…
Quantum Simulation of Charge and Exciton Transfer in Multi-mode Models using Engineered Reservoirs
Visal So, Midhuna Duraisamy Suganthi, Mingjian Zhu +7
Quantum simulation offers a route to study open-system molecular dynamics in non-perturbative regimes by programming the interactions among electronic, vibrational, and environment…
Dissipation-Assisted Steady-State Entanglement Engineering based on Electron Transfer Models
Mingjian Zhu, Visal So, Guido Pagano +1
We propose a series of dissipation-assisted entanglement generation protocols that can be implemented on a trapped-ion quantum simulator. Our approach builds on the single-site mol…
Monogamy-of-entanglement-inspired protocol to quantify bipartite entanglement using spin squeezing
Diego Fallas Padilla, Mingjian Zhu, Han Pu
Quantum entanglement is an essential resource for quantum science and technology. However, entanglement detection and quantification, via typical entanglement measures such as line…