嵌入在无自旋同位素28Si衬底中的31P原子量子对EPR谱的计算机分析

IF 1 Q4 OPTICS
S. N. Dobryakov, V. V. Privezentsev
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引用次数: 0

摘要

在本文中,我们使用EPR光谱探索嵌入28Si同位素衬底的量子对31P-31P元素之间的相互作用,假设几个硅原子分离磷同位素。EPR方法使我们能够在量子水平上确定磷原子之间相互作用的机制,并分析硅衬底对量子对中31P原子之间自旋-自旋相互作用的影响。我们还研究了控制这些相互作用的可能性。在模拟时,我们考虑了标量和矢量交换相互作用以及31P原子的未配对电子之间的偶极相互作用。我们假设间接的偶极子-偶极子相互作用是通过共轭三维轨道系统和介质(28Si同位素衬底)的极化进行的。两个磷原子的电子自旋(磁矩)之间的交换相互作用也通过极化介质进行。讨论了得到的模拟EPR谱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Computer Analysis of EPR Spectra of 31P Atom Quantum Pair Embedded in Spinless Isotope 28Si Substrate

Computer Analysis of EPR Spectra of 31P Atom Quantum Pair Embedded in Spinless Isotope 28Si Substrate

In this paper we use EPR spectrums to explore interactions between elements of a quantum pair 31P–31P embedded into 28Si isotope substrate supposing that several silicon atoms separate phosphorus isotopes. The EPR method allows us to identify at a quantum level mechanisms of interaction between the phosphorus atoms and to analyze the influence of the silicon substrate on the spin-spin interaction between 31P atoms in the quantum pairs. We also examined possibilities to control these interactions. When simulating, we take into account scalar and vector exchange interactions as well as a dipole interaction between unpaired electrons of 31P atoms. We suppose that an indirect dipole-dipole interaction is carried out via a system of conjugated 3d-orbits and by means of a polarization of the medium (the 28Si isotope substrate). The exchange interaction between the spins (the magnetic moments) of electrons of the two phosphorus atoms also is carried out via the polarized medium. We discuss the obtained simulated EPR spectrums.

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来源期刊
CiteScore
1.50
自引率
11.10%
发文量
25
期刊介绍: The journal covers a wide range of issues in information optics such as optical memory, mechanisms for optical data recording and processing, photosensitive materials, optical, optoelectronic and holographic nanostructures, and many other related topics. Papers on memory systems using holographic and biological structures and concepts of brain operation are also included. The journal pays particular attention to research in the field of neural net systems that may lead to a new generation of computional technologies by endowing them with intelligence.
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