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Ground state of a superconducting pi ring array under external magnetic fields

机译:外部磁场作用下超导pi环阵列的基态

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The ground state of a two-dimensional square superconducting pi ring array has been investigated. The circulating currents of the pi ring array will spontaneously magnetize to the 'antiferromagnetic' arrangement with directions of the nearest-neighbouring currents circulating oppositely in the absence of an external magnetic field. It is found that the external magnetic field could destroy the anti-parallel configuration effectively. The external magnetic field needed to destroy the anti-parallel configuration is related to the superconducting pi ring's inductance parameter beta = 2 pi LIc/phi(0). For a small beta the anti-parallel configuration, which is the lowest-energy ground state of the system, will be fully destroyed and changed to the configuration that the circulating currents have the same direction and parallel to the external magnetic field when the magnetic flux reaches phi(0)/4 in each ring. Moreover, the magnetic field needed to destroy the anti-parallel configuration will be very small when beta is large enough.
机译:研究了二维方形超导pi环阵列的基态。在没有外部磁场的情况下,π环形阵列的循环电流会自发地磁化为“反铁磁”排列,且最邻近的电流方向相反。发现外部磁场可以有效地破坏反并联结构。破坏反平行配置所需的外部磁场与超导pi环的电感参数beta = 2 pi LIc / phi(0)有关。对于较小的β,反平行配置(系统的最低能量基态)将被完全破坏,并更改为当磁通量大时循环电流具有相同方向并平行于外部磁场的配置在每个环中达到phi(0)/ 4。此外,当β足够大时,破坏反平行配置所需的磁场将非常小。

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