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Compressibility of a two-dimensional electron gas in a parallel magnetic field

机译:二维电子气在平行磁场中的可压缩性

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摘要

The thermodynamic compressibility of a two-dimensional electron system in the presence of an in-plane magnetic field is calculated. We use accurate correlation energy results from quantum Monte Carlo simulations to construct the ground state energy and obtain the critical magnetic field B_c required to fully spin polarize the system. Inverse compressibility as a function of density shows a kink-like behavior in the presence of an applied magnetic field, which can be identified as B_c. Our calculations suggest an alternative approach to transport measurements of determining full spin polarization.
机译:计算在平面内磁场存在下二维电子系统的热力学可压缩性。我们使用来自量子蒙特卡洛模拟的精确相关能量结果来构建基态能量,并获得完全旋转极化系统所需的临界磁场B_c。作为密度函数的逆可压缩性在存在磁场的情况下表现出类似扭结的行为,该磁场可以识别为B_c。我们的计算提出了另一种方法来传输确定全自旋极化的测量结果。

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