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Chinese Physics, 2001, Vol. 10(6): 490-493    DOI: 10.1088/1009-1963/10/6/305
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QUANTUM FLUCTUATIONS IN A MESOSCOPIC DAMPED LC PARALLEL CIRCUIT IN DISPLACED SQUEEZED FOCK STATE

Gu Yong-jian (顾永建)
Department of Physics, Weifang University, Weifang 261043, China
Abstract  We study the quantum effects of a damped LC parallel circuit considering its different performance from an RLC series circuit in classical physics. The damped LC parallel circuit with a source is quantized and the quantum fluctuations of magnetic flux and electric charge in the circuit in displaced squeezed Fock state are investigated. It is shown that, as in the RLC series circuit, the fluctuations only depend on the squeezing parameter and the parameters of the circuit components in the damped LC parallel circuit, but the effects of the circuit components on the fluctuations are different in the two circuits.
Keywords:  mesoscopic circuit      damped LC parallel circuit      displaced squeezed Fock state      quantum fluctuation  
Received:  15 December 2000      Revised:  18 January 2001      Accepted manuscript online: 
PACS:  05.40.-a (Fluctuation phenomena, random processes, noise, and Brownian motion)  
  03.65.-w (Quantum mechanics)  
  73.23.-b (Electronic transport in mesoscopic systems)  

Cite this article: 

Gu Yong-jian (顾永建) QUANTUM FLUCTUATIONS IN A MESOSCOPIC DAMPED LC PARALLEL CIRCUIT IN DISPLACED SQUEEZED FOCK STATE 2001 Chinese Physics 10 490

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