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Geometric phase corrections on a moving particle in front of a dielectric mirror

机译:在介电镜前面的移动粒子上的几何相位校正

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摘要

We consider an atom (represented by a two-level system) moving in front of a dielectric plate, and study how traces of dissipation and decoherence (both effects induced by vacuum field fluctuations) can be found in the corrections to the unitary geometric phase accumulated by the atom. We consider the particle to follow a classical, macroscopically-fixed trajectory and integrate over the vacuum field and the microscopic degrees of freedom of both the plate and the particle in order to calculate friction effects. We compute analytically and numerically the non-unitary geometric phase for the moving qubit under the presence of the quantum vacuum field and the dielectric mirror. We find a velocity dependence in the correction to the unitary geometric phase due to quantum frictional effects. We also show in which cases decoherence effects could, in principle, be controlled in order to perform a measurement of the geometric phase using standard procedures as Ramsey-like interferometry. Copyright (C) EPLA, 2017.
机译:我们考虑在介电板前面移动的原子(由两级系统表示),并研究如何在累积的整体几何相位的校正中找到耗散和破坏痕迹(真空场波动引起的两种效果)由原子。我们考虑颗粒以遵循经典的宏观固定的轨迹并整合在真空场上和板和颗粒的微观自由度,以便计算摩擦效应。在量子真空场和介电镜的情况下,我们在分析上和数值上计算了用于移动QUBBit的非酉几何相位。由于量子摩擦效应,我们发现对校正的速度依赖性。我们还表明,在这种情况下,该案例效果可以是原则上的控制,以便使用标准程序作为Ramsey的干涉测量来执行几何相位的测量。版权所有(c)epla,2017。

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  • 来源
    《EPL》 |2017年第6期|共7页
  • 作者单位

    Dept Fis Juan Jose Giambiagi Ciudad Univ Pabellon 1 RA-1428 Buenos Aires DF Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
  • 关键词

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