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Cavity quantum electrodynamics for photon mediated transfer of quantum states

机译:光子介导的量子态转移的腔量子电动力学

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摘要

an enhanced approach for transferring quantum state between quantum nodes is proposed wherein photons serve as the information carrier. Each node consists of a rubidium (~87rb) atom trapped inside a two-mode optical cavity. The approach is based on cavity quantum electrodynamics (qed) wherein a system of lasers is applied on the atom in order to generate photon through raman transition. Logic states '0' and ' 1' are represented by two subspaces of the hyperfine energy levels with magnetic sub-levels of ~87rb atom. A static magnetic field is applied upon the atoms so that the hyperfine states of ~87rb atom are split into the magnetic sub-levels (due to zeeman effect). Depending on the logic state of the transmit node; a right- or left-circularly polarized photon with designated frequency is produced through a cavity assisted raman process. When the photon is received at the receive node via an optical fiber; the logic state of the transmit node is restored (through a cavity qed process) into the receive node. A desirable feature of the approach is that; during the transmission of logic state; the transmit node itself should not significantly change its quantum state; this is successfully validated through simulations.
机译:提出了一种在量子节点之间传递量子态的增强方法,其中光子充当信息载体。每个节点由一个陷在双模光学腔内的(原子(〜87rb)组成。该方法基于腔量子电动力学(qed),其中将激光系统应用于原子,以便通过拉曼跃迁产生光子。逻辑状态“ 0”和“ 1”由超精细能级的两个子空间表示,磁性子能级约为〜87rb原子。将静态磁场施加到原子上,从而使〜87rb原子的超精细状态分裂为磁性子能级(由于塞曼效应)。取决于发送节点的逻辑状态;通过腔辅助拉曼过程产生具有指定频率的右旋或左旋圆偏振光子。当通过光纤在接收节点接收到光子时;发射节点的逻辑状态(通过腔Qed过程)恢复到接收节点。该方法的一个理想特征是:在逻辑状态传输期间;发射节点本身不应显着改变其量子状态;通过仿真已成功验证了这一点。

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  • 来源
    《Journal of Applied Physics》 |2011年第11期|p.113110.1-113110.8|共8页
  • 作者单位

    Embedded Wireless Labs, Damansara Uptown, 47400 Petaling Jaya, Selangor, Malaysia;

    Institute ofMicroengineering and Nanoelectronics (IMEN), Universiti Kebangsaan Malaysia, 43600 UKM Bangi, Selangor, Malaysia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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