Repeat-until-success distributed quantum computation by using single-photon interference at a beam splitter


Autoria(s): 冯勋立; Qian Jun; Kwek L.C.; Oh C.H.
Data(s)

2008

Resumo

A repeat-until-success (RUS) measurement-based scheme for the implementation of the distributed quantum computation by using single-photon interference at a 50:50 beam splitter is proposed. It is shown that the 50:50 beam splitter can naturally project a suitably encoded matter-photon state to either a desired entangling gate-operated state of the matter qubits or to their initial state when the photon is detected. The recurrence of the initial state permits us to implement the desired entangling gate in a RUS way. To implement a distributed quantum computation we suggest an encoding method by means of the effect of dipole-induced transparency proposed recently [E. Waks and J. Vuckovic, Phys. Rev. Lett. 96, 153601 (2006)]. The effects of the unfavorable factors on our scheme are also discussed.

Identificador

http://ir.siom.ac.cn/handle/181231/454

http://www.irgrid.ac.cn/handle/1471x/9582

Idioma(s)

英语

Fonte

冯勋立;Qian Jun;Kwek L.C.;Oh C.H. .,Phys. Rev. A,2008,78(1):12354-

Palavras-Chave #激光技术;激光物理与基本理论 #Beam splitters #Encoding methods #Entangling gate #Induced transparency #Initial states #Matter qubits #Measurement-based #Quantum computations #Repeat-until-success #Single-photon interference
Tipo

期刊论文