Teleportation相关论文
A multi-hop nondestructive teleportation scheme independent of channel parameters based on Bell pairs is presented,where......
提出了一种在另外两方辅助下实现的未知三粒子克隆方案。在协议过程中,消息发送者欲传送一个未知的三粒子态给远方的接收者,并且获......
利用简并V型三能级原子与振幅很大的单模相干态腔场的Raman相互作用,实现两比特的控制非门,同时提出了一种传送未知原子态的方案。......
未知量子态从一个地方到另一个地方的隐形传送在量子信息领域中有非常重要的作用.提出了一种利用简并V型三能级原子与振幅很大的单......
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Qutrit is the natural extension of qubit in quantum information processing and has quite a few advantages that outperfor......
Hierarchical simultaneous entanglement swapping for multi-hop quantum communication based on multi-p
Entanglement swapping is a key technology for multi-hop communication based on entanglement in quantum net-works.However......
In this review article,we will review the recent process of quantum communications.In the past decades,there are many de......
为探究吕家坨井田地质构造格局,根据钻孔勘探资料,采用分形理论和趋势面分析方法,研究了井田7......
为探究吕家坨井田地质构造格局,根据钻孔勘探资料,采用分形理论和趋势面分析方法,研究了井田7......
为探究吕家坨井田地质构造格局,根据钻孔勘探资料,采用分形理论和趋势面分析方法,研究了井田7......
为探究吕家坨井田地质构造格局,根据钻孔勘探资料,采用分形理论和趋势面分析方法,研究了井田7......
Scheme for Realizing Probabilistic Teleportation of Bipartite Photonic States via Linear Optical Ele
为探究吕家坨井田地质构造格局,根据钻孔勘探资料,采用分形理论和趋势面分析方法,研究了井田7......
为探究吕家坨井田地质构造格局,根据钻孔勘探资料,采用分形理论和趋势面分析方法,研究了井田7......
为探究吕家坨井田地质构造格局,根据钻孔勘探资料,采用分形理论和趋势面分析方法,研究了井田7......
为探究吕家坨井田地质构造格局,根据钻孔勘探资料,采用分形理论和趋势面分析方法,研究了井田7......
为探究吕家坨井田地质构造格局,根据钻孔勘探资料,采用分形理论和趋势面分析方法,研究了井田7......
为探究吕家坨井田地质构造格局,根据钻孔勘探资料,采用分形理论和趋势面分析方法,研究了井田7......
为探究吕家坨井田地质构造格局,根据钻孔勘探资料,采用分形理论和趋势面分析方法,研究了井田7......
将来的远程通信中,量子远程传输可能成为重要的手段之一.整个理论是基于量子纠缠态机制的.但是纠缠态是很脆弱的.当量子态被环境扰......
We present an experimentally feasible scheme for teleportation of an arbitrary unknown two-atom entangled state by using......
In this paper, we propose a protocol to deterministically teleport an unknown mixed state of qubit by utilizing a maxima......
We propose a scheme for teleportation of four-level atomic states in thermal cavities. The scheme does not involve the g......
General conditions are given in order to perform a perfect teleportation process in the case where theHilbert spaces inv......
Two kinds of M-particle d-dimensional Schmidt-form entangled state teleportation protocols are presented.In the first pr......
我们利用腔场和激光相互作用,提出一个冗余的、对消相干不敏感的方案,来传输任意一个三能级原子的态.由于原子自发跃迁和腔延迟作......
A scheme of teleportation of an arbitrary three-particle state is presented when three pairs of entangled particles are ......
The teleportation of an arbitrary n-particle state (n ≥ 1) is proposed if n pairs of identical EPR states are utilized ......
Teleportation of an unknown two-particle entangled state via an asymmetric three-particle entangleme
In this article, a protocol for the teleportation of anunknown two-particle entanglement is proposed. The feature ofthe ......
A scheme of teleporting a multi-particle state via W state is presented. The W class states serve as quantum channels. A......
We present a physical scheme for realizing probabilistic teleportation of bipartite atomic states via cavity QED. This s......
The effects of amplitude damping in quantum noise channels on average fidelity of quantum teleportation are analyzed in ......
A deterministic teleportation scheme for an arbitrary two-particle state is proposed in cavity QED. The success probabil......
Teleportation schemes with a tripartite entangled state in cavity QED are investigated. The schemes do not need Bell sta......
Scheme for Realizing Probabilistic Teleportation of Bipartite Photonic States via Linear Optical Ele
We propose a probabilistic scheme for realizing teleportation of bipartite photonic states using linear optical elements......
We present a physical scheme to teleport an unknown atomic entangled state via cavity decay. In the teleportation proces......
Approximate and Conditional Teleportation of an Unknown Atomic-Entangled State Without Bell-State Me
A scheme for approximately and conditionally teleporting an unknown atomic-entangled state in cavity QED is proposed.It ......
A scheme for approximately and conditionally teleporting an unknown atomic state via two-photon interaction in cavity QE......

