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Fundamental quantum 1/f noise in semiconductor devices

机译:半导体器件中的基本量子1 / f噪声

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The quantum 1/f noise theory has been developed in the last two decades and has been applied to 1/f noise suppression in various electronic devices. This theory derives fundamental quantum fluctuations present in the elementary processes of physics at the level of the quantum mechanical cross sections and process rates. This paper demonstrates the basic simplicity of the theory with an elementary physical derivation followed by a short derivation of the conventional quantum 1/f effect in second quantization, for an arbitrary number of particles N defining the scattered current in the final state. A new derivation of the coherent quantum 1/f effect is also included. No adjustable parameters are present in the quantum 1/f theory. Practical applications to semiconductor materials, p-n junctions, SQUID's and quartz resonators are presented. Optimal design principles based on the quantum 1/f theory are described and explained.
机译:量子1 / f噪声理论在最近的二十年中得到了发展,并已应用于各种电子设备中的1 / f噪声抑制。该理论推导了在物理基本过程中存在的基本量子涨落,该涨落发生在量子力学截面和过程速率的水平上。本文证明了该理论的基本简单性,其中基本物理推导然后是第二次量化中常规量子1 / f效应的简短推导,其中任意数量的粒子N定义了最终状态下的散射电流。还包括相干量子1 / f效应的新推导。量子1 / f理论中没有可调整的参数。介绍了半导体材料,p-n结,SQUID和石英谐振器的实际应用。描述和解释了基于量子1 / f理论的最佳设计原理。

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