Spin-orbit coupling, mass anisotropy, time-reversal symmetry, and spontaneous symmetry breaking in the spectroscopy of shallow centers in elemental semiconductors

Citation
Ak. Ramdas et S. Rodriguez, Spin-orbit coupling, mass anisotropy, time-reversal symmetry, and spontaneous symmetry breaking in the spectroscopy of shallow centers in elemental semiconductors, SOL ST COMM, 117(3), 2001, pp. 213-222
Citations number
49
Categorie Soggetti
Apllied Physucs/Condensed Matter/Materiales Science
Journal title
SOLID STATE COMMUNICATIONS
ISSN journal
00381098 → ACNP
Volume
117
Issue
3
Year of publication
2001
Pages
213 - 222
Database
ISI
SICI code
0038-1098(2001)117:3<213:SCMATS>2.0.ZU;2-H
Abstract
The electronic states of shallow donors and accepters, explored under high resolution with Fourier Transform infrared and Raman spectroscopy, undersco re the intimate connection between the localized states of these impurities and the electronic band structure of the host as contemplated in the effec tive mass theory. Spin-orbit interaction, mass anisotropy of the conduction band minimum (donors) and of the valence band maximum (acceptors), the sit e symmetry of the impurity and the possible spontaneous departure from it w hen the electronic ground state is degenerate are the features highlighted in our discussion of the excitation spectra of donors in silicon and boron accepters in diamond. As in atomic spectroscopy, the removal of degeneracy under external perturbation and the polarization and field dependence of th e spectral components provide a wealth of insightful characterizations. We demonstrate them with the Zeeman effect of the Raman transition between the spin-orbit split counterparts of the 1s ground state of baron accepters in diamond; g-factors and the extreme mass anisotropy of the hole emerge from these studies. They also provide beautiful examples of time-reversal symme try, conservation laws and selection rules connecting the Stokes to the ant i-Stokes Raman scattering. (C) 2001 Elsevier Science Ltd. All rights reserv ed.