首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >THE QUANTUM FLUCTUATIONS OF MESOSCOPIC DAMPED MUTUAL INDUCTANCE COUPLED DOUBLE RESONANCE RLC CIRCUIT AT FINITE TEMPERATURE
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THE QUANTUM FLUCTUATIONS OF MESOSCOPIC DAMPED MUTUAL INDUCTANCE COUPLED DOUBLE RESONANCE RLC CIRCUIT AT FINITE TEMPERATURE

机译:有限温度下介观阻尼互感耦合双共振RLC电路的量子涨落

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Mesoscopic damped mutual inductance coupled double resonance RLC circuit is quantized by the method of damped harmonic oscillator quantization and linear transformation. The energy levels of this circuit are given. By thermo-field dynamics (TFD), the quantum fluctuations of the current and voltage of each loop are researched in the thermal vacuum state, thermal coherent state and thermal squeezed state. It is shown that the quantum fluctuations of the current and voltage are related not only to the circuit inherent parameter and coupled magnitude of mutual inductance, but also squeezed coefficients, squeezed angle, environmental temperature and damped resistance. Furthermore, because of environmental temperature and damped resistance, the quantum fluctuations increase with the increase of temperature and decay along with time.
机译:介观阻尼互感耦合双谐振RLC电路是通过阻尼谐波振荡器量化和线性变换的方法进行量化的。给出了该电路的能级。通过热场动力学(TFD),研究了在热真空状态,热相干状态和热压缩状态下每个回路电流和电压的量子涨落。结果表明,电流和电压的量子涨落不仅与电路固有参数和互感耦合幅度有关,而且与压缩系数,压缩角度,环境温度和阻尼电阻有关。此外,由于环境温度和阻尼电阻,量子涨落随着温度的升高而增加,并随时间衰减。

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