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Itinerant Spin Dynamics in Structures of ... - Jacobs University

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120 Bibliography<br />

[Fro01]<br />

[GF97]<br />

[GGB + 07]<br />

[GI02]<br />

[GI04]<br />

[GKD04]<br />

[Gol05]<br />

[Gru00]<br />

[HLN80]<br />

[HNA + 99]<br />

[HPB + 97]<br />

V. A. Froltsov. Diffusion <strong>of</strong> <strong>in</strong>homogeneous sp<strong>in</strong> distribution <strong>in</strong> a magnetic<br />

field parallel to <strong>in</strong>terfaces <strong>of</strong> a III-V semiconductor quantum well. Phys. Rev.<br />

B, 64(4):045311, Jun 2001.<br />

Claudio Grimaldi and Peter Fulde. Theory <strong>of</strong> screen<strong>in</strong>g <strong>of</strong> the phononmodulated<br />

sp<strong>in</strong>-orbit <strong>in</strong>teraction <strong>in</strong> metals . Phys. Rev. B, 55(23):15523–<br />

15530, Jun 1997.<br />

S. Giglberger, L. E. Golub, V. V. Bel’kov, S. N. Danilov, D. Schuh, C. Gerl,<br />

F. Rohlf<strong>in</strong>g, J. Stahl, W. Wegscheider, D. Weiss, W. Prettl, and S. D.<br />

Ganichev. Rashba and dresselhaus sp<strong>in</strong> splitt<strong>in</strong>gs <strong>in</strong> semiconductor quantum<br />

wells measured by sp<strong>in</strong> photocurrents. Phys. Rev. B, 75(3):035327, Jan<br />

2007.<br />

M. M. Glazov and E. L. Ivchenko. Precession sp<strong>in</strong> relaxation mechanism<br />

caused by frequent electron-electron collisions. Jetp Lett., 75:403, 2002.<br />

M. M. Glazov and E. L. Ivchenko. Effect <strong>of</strong> electron-electron <strong>in</strong>teraction on<br />

sp<strong>in</strong> relaxation <strong>of</strong> charge carriers <strong>in</strong> semiconductors. J. Exp. and Theoret.<br />

Phys., 99:1279, 2004.<br />

Alexander O. Govorov, Alexander V. Kalameitsev, and John P. Dulka. <strong>Sp<strong>in</strong></strong>dependent<br />

transport <strong>of</strong> electrons <strong>in</strong> the presence <strong>of</strong> a smooth lateral potential<br />

and sp<strong>in</strong>-orbit <strong>in</strong>teraction. Phys. Rev. B, 70(24):245310, Dec 2004.<br />

L. E. Golub. Weak Antilocalization <strong>in</strong> High-Mobility Two-Dimensional Systems.<br />

Phys. Rev. B, 71(23):235310, 2005.<br />

Dirk Grundler. Large Rashba Splitt<strong>in</strong>g <strong>in</strong> InAs Quantum Wells due to Electron<br />

Wave Function Penetration <strong>in</strong>to the Barrier Layers. Phys. Rev. Lett.,<br />

84(26):6074–6077, Jun 2000.<br />

Sh<strong>in</strong>obuHikami, Anatoly I. Lark<strong>in</strong>, and Yosuke Nagaoka. <strong>Sp<strong>in</strong></strong>-Orbit Interaction<br />

and Magnetoresistance <strong>in</strong> the Two Dimensional Random System. Prog.<br />

Theor. Phys., 63(2):707–710, 1980.<br />

Can-M<strong>in</strong>g Hu, Junsaku Nitta, Tatsushi Akazaki, Hideaki Takayanagi, Jiro<br />

Osaka, P. Pfeffer, and W. Zawadzki. Zero-field sp<strong>in</strong> splitt<strong>in</strong>g <strong>in</strong> an <strong>in</strong>verted<br />

In 0.53 Ga 0.47 As/In 0.52 Al 0.48 As heterostructure: Band nonparabolicity <strong>in</strong>fluence<br />

and the subband dependence. Phys. Rev. B, 60(11):7736–7739, Sep<br />

1999.<br />

T Hassenkam, S Pedersen, K Baklanov, A Kristensen, C B Sorensen, P E<br />

L<strong>in</strong>del<strong>of</strong>, F G Pikus, and G E Pikus. <strong>Sp<strong>in</strong></strong> splitt<strong>in</strong>g and weak localization<br />

<strong>in</strong> (110) GaAs/AlxGa1-xAs quantum wells. Phys. Rev. B, 55(15):9298–9301,<br />

1997.

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