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A microscopic study of the finite two-dimensional trapped bose atomic gas

机译:有限二维俘获玻色原子气体的微观研究

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Using the static fluctuation approximation, finite two-dimensional Bose gas systems, trapped in a harmonic potential, are investigated. The interparticle potential is taken as a δ-function. The chemical potential, condensate fraction, total energy, and heat capacity are calculated as functions of the temperature for different values of the interaction strength and of the number of particles. Our results show that interacting bosons trapped in a harmonic potential have a similar behavior to that of the ideal system. These results conform with those obtained using different many-body theories, such as the semi-classical two-fluid model and the Hartree-Fock approximation.
机译:使用静态波动近似,研究了陷于谐波势的有限二维玻色气体系统。粒子间的电位取为δ函数。对于相互作用强度和颗粒数的不同值,根据温度计算化学势,冷凝物分数,总能量和热容量。我们的结果表明,陷在谐波电位中的相互作用的玻色子具有与理想系统相似的行为。这些结果与使用不同的多体理论(例如,半经典的二流体模型和Hartree-Fock近似)获得的结果相符。

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