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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Origin of macroscopic single-particle quantum behavior in Bose-Einstein-condensed systems
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Origin of macroscopic single-particle quantum behavior in Bose-Einstein-condensed systems

机译:Bose-Einstein凝聚系统中宏观单粒子量子行为的起源

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It is shown that any Bose-Einstein-condensed fluid in its ground state will exhibit macroscopic singleparticle quantum behavior (MSPQB). That is, (1) the many-particle wave function Psi(r(1),..., r(n)) factors into a single-particle product Pi(n)eta(r(n)); (2) the function eta (r) extends over macroscopic length scales and obeys the usual quantum equations for particle flux in a single-particle system; and (3) eta(r) obeys a nonlinear singleparticle Schrodinger equation. The latter equation reduces to the Gross-Pitaevskii equation when interactions are weak and determines the density distribution of the fluid and the time development of this distribution. The arguments used rely only on elementary concepts of probability theory and many-particle wave mechanics and are valid even in strongly interacting fluids such as superfluid He-4. It is shown that Bose-Einstein condensation implies that the N-particle wave function Psi is delocalized. That is, if one considers a single-particle coordinate r, then for all values that occur of the other N-1 coordinates, Psi is a nonzero function of r over a region of space proportional to V, where V is the total volume within which the fluid is contained. MSPQB is a consequence of this delocalization and the absence of long-range correlations between particle positions in fluids. The results are accurate provided that only averages over regions of space containing many particles are considered. For averages over volumes of space containing N (Omega) particles, inaccuracies due to quantum fluctuations are similar to 1/root N-Omega.
机译:结果表明,其地态的任何Bose-einstein-浓缩液将表现出宏观单颗粒量子行为(MSPQB)。也就是说,(1)许多粒子波函数psi(r(1),...,r(n))是单颗粒产物pi(n)eta(r(n))的因子; (2)功能ETA(R)延伸在宏观长度尺度上,并遵守单粒子系统中的粒子通量的通常量子方程; (3)eta(r)obeys一个非线性单张氏乳酪schrodinger方程。后者方程减少到互动较弱时的总皮脂诗歌等式,并确定流体的密度分布以及该分布的时间发展。仅依赖于概率理论和许多粒子波力学的基本概念的争论,并且即使在强烈相互作用的液体中是有效的,如超流量HE-4。结果表明,Bose-Einstein冷凝意味着N-颗粒波函数PSI被划分。也就是说,如果一个人认为单粒子坐标R,那么对于其他N-1坐标发生的所有值,PSI是与V的空间区域上的r的非零函数,其中V是总体积包含流体。 MSPQB是这种删除性的结果,并且流体中粒子位置之间没有长距离相关性。结果是准确的,只要考虑含有许多粒子的空间区域的平均值。对于含有N(Omega)颗粒的空间的平均值,由于量子波动引起的不准确性与1 /根N-OMEGA类似。

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