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The origin of the phase in the interference of Bose-Einstein condensates

机译:玻色-爱因斯坦凝聚物干涉中相的起源

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We consider the interference of two overlapping ideal Bose-Einstein condensates. The usual description of this phenomenon involves the introduction of a condensate wave function with a definite phase. We investigate the origin of this phase and the theoretical basis of treating interference. It is possible to construct a phase state for which the particle number is uncertain, but the phase is known. How such a state would be prepared before an experiment is not obvious. We show that a phase can also arise from experiments using condensates with known particle numbers. The analysis of measurements in such states also gives us a prescription for preparing phase states. The connection of this procedure to questions of spontaneously broken gauge symmetry and to hidden variables is discussed. (c) 2006 American Association of Physics Teachers.
机译:我们考虑了两个重叠的理想玻色-爱因斯坦凝聚物的干扰。对这种现象的通常描述涉及引入具有确定相位的冷凝波函数。我们研究了该阶段的起源以及治疗干扰的理论基础。可以构造一个其粒子数不确定但其相位已知的相态。在实验之前如何准备这种状态尚不清楚。我们表明,使用具有已知颗粒数的冷凝物的实验也可以产生相。在这种状态下的测量分析也为我们提供了准备相态的处方。讨论了此过程与自发破坏规范对称性问题和隐藏变量的联系。 (c)2006年美国物理教师协会。

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