Optical excitation and control of electron spins in semiconductor quantum wells

被引:22
作者
Chen, Zhigang
Carter, Samuel G.
Bratschitsch, Rudolf
Cundiff, Steven T. [1 ]
机构
[1] Univ Colorado, JILA, Boulder, CO 80309 USA
基金
美国国家科学基金会;
关键词
Spin coherence; Spin transport; Transient spin grating; Quantum well; NEGATIVELY CHARGED EXCITONS; RELAXATION; DYNAMICS; RESONANCE; TRANSPORT; COHERENT; MANIPULATION; PRECESSION; DIFFUSION; MEMORY;
D O I
10.1016/j.physe.2010.01.043
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
We present our recent work on optical excitation of electron spins and the resulting dynamics in semiconductor quantum wells. We primarily use the transient Faraday/Kerr rotation technique in several different experiments to give a more complete picture of spin polarization, manipulation, transport, decoherence, and the influence of disorder. Using two color time-resolved techniques is particularly valuable for resolving spin dynamics of different species by spectral selection. Experiments in lightly n-doped quantum wells show that spin polarization of the electron gas is generated through trion formation, with spin coherence partially lost through exciton spin relaxation. We also demonstrate that existing electron spin polarization can be rotated without excitation of excitons or trions through a below-resonance adiabatic Raman process. Diffusion of electron spins is also measured using transient spin gratings for different optical excitation conditions. Spin diffusion is shown to accelerate with increasing density or energy of the optically excited carriers. Finally, we examine the spin coherence of the electron gas with different densities, in CdTe quantum wells with different doping densities, and through a mixed type GaAs quantum well, where the electron density can be varied through optical excitation. We characterize the disorder potential by measuring the electron g-factor dependence on density, and show that spin coherence is lost from the interplay between localization by disorder and dynamical scattering. Published by Elsevier B.V.
引用
收藏
页码:1803 / 1819
页数:17
相关论文
共 80 条
[1]   Spin quantum beats of 2D excitons [J].
Amand, T ;
Marie, X ;
LeJeune, P ;
Brousseau, M ;
Robart, D ;
Barrau, J ;
Planel, R .
PHYSICAL REVIEW LETTERS, 1997, 78 (07) :1355-1358
[2]   Electronic measurement and control of spin transport in silicon [J].
Appelbaum, Ian ;
Huang, Biqin ;
Monsma, Douwe J. .
NATURE, 2007, 447 (7142) :295-298
[3]   Nanosecond spin memory of electrons in CdTe/CdMgTe quantum wells [J].
Astakhov, GV ;
Kiessling, T ;
Yakovlev, DR ;
Zhukov, EA ;
Bayer, M ;
Ossau, W ;
Zakharchenya, BP ;
Karczewski, G ;
Wojtowicz, T ;
Kossut, J .
PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS, 2006, 243 (04) :858-862
[4]   Picosecond coherent optical manipulation of a single electron spin in a quantum dot [J].
Berezovsky, J. ;
Mikkelsen, M. H. ;
Stoltz, N. G. ;
Coldren, L. A. ;
Awschalom, D. D. .
SCIENCE, 2008, 320 (5874) :349-352
[5]   Electron spin coherence in n-doped CdTe/CdMgTe quantum wells [J].
Bratschitsch, R. ;
Chen, Z. ;
Cundiff, S. T. ;
Zhukov, E. A. ;
Yakovlev, D. R. ;
Bayer, M. ;
Karczewski, G. ;
Wojtowicz, T. ;
Kossut, J. .
APPLIED PHYSICS LETTERS, 2006, 89 (22)
[6]   Room temperature spin relaxation in GaAs/AlGaAs multiple quantum wells [J].
Britton, RS ;
Grevatt, T ;
Malinowski, A ;
Harley, RT ;
Perozzo, P ;
Cameron, AR ;
Miller, A .
APPLIED PHYSICS LETTERS, 1998, 73 (15) :2140-2142
[7]   Spin gratings and the measurement of electron drift mobility in multiple quantum well semiconductors [J].
Cameron, AR ;
Riblet, P ;
Miller, A .
PHYSICAL REVIEW LETTERS, 1996, 76 (25) :4793-4796
[8]   Ultrafast below-resonance Raman rotation of electron spins in GaAs quantum wells [J].
Carter, S. G. ;
Chen, Z. ;
Cundiff, S. T. .
PHYSICAL REVIEW B, 2007, 76 (20)
[9]   Optical measurement and control of spin diffusion in n-doped GaAs quantum wells [J].
Carter, S. G. ;
Chen, Z. ;
Cundiff, S. T. .
PHYSICAL REVIEW LETTERS, 2006, 97 (13)
[10]   Theory of quantum optical control of a single spin in a quantum dot [J].
Chen, PC ;
Piermarocchi, C ;
Sham, LJ ;
Gammon, D ;
Steel, DG .
PHYSICAL REVIEW B, 2004, 69 (07)