activity
19922005
most citedUniversal Quantum Gate, Yang--Baxterization and Hamiltonian

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

collaborators

17 papers

quant-ph2005

A Scheme of Generating and Spatially Separating Two-Component Entangled Atom Lasers

Xiong-Jun Liu, Hui Jing, Xin Liu +2

Entanglement of remote atom lasers is obtained via quantum state transfer technique from lights to matter waves in a five-level -type system. The considered atom-atom collisions…

quant-ph20041 cited

Universal Quantum Gate, Yang--Baxterization and Hamiltonian

Yong Zhang, Louis H. Kauffman, Mo-Lin Ge

It is fundamental to view unitary braiding operators describing topological entanglements as universal quantum gates for quantum computation. This paper derives a unitary solution…

cond-mat.supr-con2004

A Model for the Coexistence of p-wave Superconductivity and Ferroelectricity

Hong-Biao Zhang, Li-Jun Tian, Guo-Hong Yang +2

A model for the coexistence of p-wave superconductivity (SC) and ferroelectricity (FE) is presented. The Hamiltonian of SC sector and FE sector can be diagonalized by using the $so…

quant-ph20041 cited

Soliton Atom Laser with Quantum State Transfer Property

Xiong-Jun Liu, Hui Jing, Mo-Lin Ge

We propose a scheme to obtain soliton atom laser with nonclassical atoms based on quantum state transfer process from light to matter waves in nonlinear case, which may find novel…

quant-ph2003

Susceptibility and Group Velocity in a Fully Quantized Model For Electromagnetically Induced Transparency

Xiong-Jun Liu, Mo-lin Ge

We have developed a fully quantized model for EIT in which the decay rates are taken into account. In this model, the general form of the susceptibility and group velocity of the p…

cond-mat.supr-con2003

The coexistence of p-wave spin triplet superconductivity and itinerant ferromagnetism

Hong-Biao Zhang, Mo-Lin Ge, Li-Jun Tian

A model for coexistence of p-wave spin-triplet superconductivity (SC) and itinerant ferromagnetism (FM) is presented. The Hamiltonian can be diagonalized by using the so(5) algebra…