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Atomic and nuclear interference and coherence phenomena and their applications.

机译:原子核干扰与相干现象及其应用。

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摘要

In this work, interference and coherence phenomena, appearing in atomic and molecular ensembles interacting with coherent light sources, as electromagnetically induced transparency (EIT), coherent population trapping (CPT), and slow group velocity of light are investigated. The goal of the project is to make the steps towards various applications of these phenomena, first, by studying them in solid media (which are the most advantageous for applications), second, by suggesting some novel applications such as CPT-based plasma diagnostics, and realization of new types of solid-state lasers (based on suppression of excited-state absorption via EIT). The third goal of the project is extension of coherence and interference effects well-known in optics to the gamma-ray range of frequencies and, correspondingly, from atomic to nuclear transitions. A particular technique of chirped pulse compression applied to Mossbauer transitions is considered and the possibility of compression of Mossbauer radiation into ultrashort gamma-ray pulses is analyzed.; The theoretical treatment of the interference and coherence effects is based on the semiclassical description of atom-light interaction, which is sufficient for correct analysis of the phenomena considered here. Coherent media are considered in two-, three-, and four-level approximations while their interaction with light is studied both analytically and numerically using the Maxwell-Bloch set of equations.
机译:在这项工作中,研究了在与相干光源相互作用的原子和分子集合体中出现的干涉和相干现象,如电磁感应透明性(EIT),相干种群俘获(CPT)和光的慢群速度。该项目的目标是朝着这些现象的各种应用迈出第一步,首先是在固体介质中研究这些现象(这对应用最有利),其次是建议一些新颖的应用,例如基于CPT的等离子体诊断,新型固态激光器的实现(基于通过EIT抑制激发态吸收)。该项目的第三个目标是将光学中众所周知的相干和干涉效应扩展到频率的伽马射线范围,并相应地从原子跃迁到核跃迁。考虑了应用于Mossbauer跃迁的chi脉冲压缩的一种特殊技术,并分析了将Mossbauer辐射压缩为超短伽马射线脉冲的可能性。干涉和相干效应的理论处理是基于原子-光相互作用的半经典描述,这足以正确分析此处考虑的现象。相干介质以两级,三级和四级近似方式考虑,而它们与光的相互作用使用Maxwell-Bloch方程组进行了解析和数值研究。

著录项

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 180 p.
  • 总页数 180
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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