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Phase control in a coherent superposition of degenerate quantum states through frequency control

机译:通过频率控制对简并量子态进行相干叠加的相位控制

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摘要

We demonstrate a controlled phase change of pi in a degenerate superposition by altering a laser frequency by only 10 MHz. The method relies on the preparation of an adiabatic state involving the M velence +-2 and M velence 0 states of the ~(3)P_(2) (J velence 2) level of metastable neon. Dependent on the frequency, the preparation proceeds either by stimulated Raman adiabatic passage (STIRAP) or by coherent population trapping (CPT). In the former case the superposition is prepared by adiabatic transfer induced in an extended tripod linkage scheme. In the latter case population is optically pumped into the Zeeman manifold of the level ~(3)P_(2). The population which does not reach a dark state decays to the ground state of neon. The amplitudes and relative phases of the dark states differ for the two cases. The phase change is monitored using the method of phase-to-population mapping.
机译:我们通过将激光频率仅改变10 MHz来演示简并叠加中pi的受控相位变化。该方法依赖于制备包括亚稳氖的〜(3)P_(2)(J velence 2)能级的M velence + -2和M velence 0状态的绝热态。根据频率,准备工作可通过受激拉曼绝热传热(STIRAP)或通过相干种群捕获(CPT)进行。在前一种情况下,叠加是通过在扩展的三脚架连接方案中诱导的绝热转移制备的。在后一种情况下,将种群光学泵入水平〜(3)P_(2)的塞曼流形。未达到暗态的粒子衰减为氖的基态。在两种情况下,暗态的幅度和相对相位都不同。使用相到人口映射的方法监视相变。

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