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1)  mesoscopic Josephson junction
介观约瑟夫森结
1.
An effective bosonic Hamiltonian describing the interaction of a mesoscopic Josephson junction with a quantized radiation field is studied.
研究一个描述介观约瑟夫森结与量子辐射场相互作用系统的等效玻色子哈密顿量 。
2.
To investigate the interaction of a mesoscopic Josephson junction with a single mode quantized electromagnetic field, the diagnonalizing process of the coupled system Hamiltonian was performed by using an unitary transformation.
研究介观约瑟夫森结与量子化电磁场相互作用系统 。
3.
To study the nonclassical effects of the mesoscopic Josephson junction in the presence of a nonclassical microwave, the mesoscopic Josephson junction and the field were both treated quantum mechanically, and the external field approximation was used.
研究非经典光场作用下介观约瑟夫森结中的非经典效应 。
2)  mesoscopic Josephson current
介观约瑟夫森电流
3)  Josephson junction
约瑟夫森结
1.
Quantization of mesoscopic mutual inductance coupling circuit with superconducting Josephson junctions and their quantum effects;
含有超导约瑟夫森结介观互感电路的量子化及其量子效应
2.
Quantum corrections in fitting the switching current distributions of intrinsic Josephson junction;
本征约瑟夫森结跳变电流分布的量子修正
3.
Computer simulations for the intermittent-type chaos and chaos control in RC-shunted Josephson junction;
电阻电容分路的约瑟夫森结中阵发性混沌及混沌控制的计算机模拟
4)  Josephson junctions
约瑟夫森结
1.
Quantum dynamics, in particular, macroscopic quantum tunneling in Josephson junctions coupled with resonant electro-magnetic modes is studied in the paper.
研究存在电磁共振模式耦合时约瑟夫森结中的宏观量子效应。
5)  Josephson junction arrays
约瑟夫森结阵列
1.
The phase locking of high temperature superconductor Josephson junction arrays;
高温超导约瑟夫森结阵列的相位锁定
2.
Magnetic-field-induced phase transition of vortex glass states in disordered Josephson junction arrays
无序二维约瑟夫森结阵列中磁场引起的涡旋玻璃态相变
6)  Josephson junction
超导约瑟夫森结
1.
Application of Josephson junction in the spectral information detection;
超导约瑟夫森结在频谱信息检测中的应用
补充资料:交流约瑟夫森效应A.C.(alternationcurrent)(Josephsoneffect)
交流约瑟夫森效应A.C.(alternationcurrent)(Josephsoneffect)

约瑟夫森结两端加上电压V有显示时(超过未显示时,即V=0时的最大超电流Ic),结区出现辐射频率v与V成正比的正弦超电流:v=2eV/h,e为电子电荷量,h为普朗克常数。若结区再受微波辐射,则在I-V特性曲线上,在某些分立的常电压下,直流电流会突然增大,出现被感应的一系列常电压-电流阶梯,台阶处Vn与相应辐照微波频率v的关系为:Vn=nhv/2e(n=0,1,2,…)。邻近电流阶梯间的电压差是等距离的,这种电流阶梯称微波感应阶梯,这是吸收电磁波所致,与上面所述辐射电磁波成为逆效应,这些现象统称为交流约瑟夫森效应,可用能量守恒来理解。对弱连结也呈现有交流约瑟夫森效应。用此效应测定的物理常数h/2e是最精确的,由于电流阶梯处V不变,已公认可监督电动势基准。

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