Presentation 2013-10-29
Classical Particle Modeling of Quantum Wave Propagation with Excitation and Refraction
Yuma KAWABATA, Hisato FUJISAKA, Takeshi KAMIO,
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Abstract(in English) Quantum particles possess both wave and particle natures. When quantum effect devices exploiting the wave nature and the devices described from the view point of particle nature coexist in a system, the following advantages are gained by expressing former devices in the same way as the expression of the latter devices: First, it is not necessary to compute probability distribution from wave functions and sample values in accordance with the probability distribution. Secondly, the particle models of the devices are suitable models for conventional circuit simulators. In this paper, simple particle models of an electromagnetic wave detector and an electron lens are constructed by applying Nelson's stochastic quantization theory. The device characteristics obtained from the wave functions and from the behavior of the particle models were almost equal.
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Keyword(in English) electromagnetic wave detector / electron lens / Nelson's stochastic quantization
Paper # NLP2013-104
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Conference Information
Committee NLP
Conference Date 2013/10/21(1days)
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Registration To Nonlinear Problems (NLP)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Classical Particle Modeling of Quantum Wave Propagation with Excitation and Refraction
Sub Title (in English)
Keyword(1) electromagnetic wave detector
Keyword(2) electron lens
Keyword(3) Nelson's stochastic quantization
1st Author's Name Yuma KAWABATA
1st Author's Affiliation Faculty of Information Sciences, Hiroshima City University()
2nd Author's Name Hisato FUJISAKA
2nd Author's Affiliation Faculty of Information Sciences, Hiroshima City University
3rd Author's Name Takeshi KAMIO
3rd Author's Affiliation Faculty of Information Sciences, Hiroshima City University
Date 2013-10-29
Paper # NLP2013-104
Volume (vol) vol.113
Number (no) 271
Page pp.pp.-
#Pages 6
Date of Issue