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Shannon information entropies for rectangular multiple quantum well systems with constant total lengths

Shannon information entropies for rectangular multiple quantum well systems with constant total lengths
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摘要 We first study the Shannon information entropies of constant total length multiple quantum well systems and then explore the effects of the number of wells and confining potential depth on position and momentum information entropy density as well as the corresponding Shannon entropy.We find that for small full width at half maximum(FWHM) of the position entropy density,the FWHM of the momentum entropy density is large and vice versa.By increasing the confined potential depth,the FWHM of the position entropy density decreases while the FWHM of the momentum entropy density increases.By increasing the potential depth,the frequency of the position entropy density oscillation within the quantum barrier decreases while that of the position entropy density oscillation within the quantum well increases.By increasing the number of wells,the frequency of the position entropy density oscillation decreases inside the barriers while it increases inside the quantum well.As an example,we might localize the ground state as well as the position entropy densities of the1 st,2 nd,and 6 th excited states for a four-well quantum system.Also,we verify the Bialynicki–Birula–Mycieslki(BBM)inequality. We first study the Shannon information entropies of constant total length multiple quantum well systems and then explore the effects of the number of wells and confining potential depth on position and momentum information entropy density as well as the corresponding Shannon entropy.We find that for small full width at half maximum(FWHM) of the position entropy density,the FWHM of the momentum entropy density is large and vice versa.By increasing the confined potential depth,the FWHM of the position entropy density decreases while the FWHM of the momentum entropy density increases.By increasing the potential depth,the frequency of the position entropy density oscillation within the quantum barrier decreases while that of the position entropy density oscillation within the quantum well increases.By increasing the number of wells,the frequency of the position entropy density oscillation decreases inside the barriers while it increases inside the quantum well.As an example,we might localize the ground state as well as the position entropy densities of the1 st,2 nd,and 6 th excited states for a four-well quantum system.Also,we verify the Bialynicki–Birula–Mycieslki(BBM)inequality.
作者 M Solaimani Guo-Hua Sun Shi-Hai Dong M Solaimani;孙国华;董世海(Department of Physics, Faculty of Science, Qom University of Technology, Qom, Iran;Catedrática CONACyT, CIC, lnstituto Politécnico Nacional, Unidad Profesional ALM, CDMX, C. P. 07700, Mexico;Laboratorio de Informacién Cuántica, CIDETEC, Instituto Politécnico Nacional, Unidad Profesional ALM, CDMX, C. P. 07700, Mexico)
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第4期154-163,共10页 中国物理B(英文版)
基金 Project supported by the Iranian Nanotechnology Initiative Council(INIC) the 20180677-SIP-IPN,Mexico the CONACYT 288856-CB-2016,Mexico
关键词 position and momentum Shannon entropies multiple quantum well entropy densities position and momentum Shannon entropies, multiple quantum well, entropy densities
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