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相关论文: Two kinds of spin precession modes in diluted magn…

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We construct a spin-drift-diffusion model to describe spin-polarized electron transport in zincblende semiconductors in the presence of magnetic fields, electric fields, and off-diagonal strain. We present predictions of the model for…

材料科学 · 物理学 2009-11-11 M. Hruska , S. Kos , S. A. Crooker , A. Saxena , D. L. Smith

Magnetically mediated Cooper pairing is generally regarded as a key to establish the unified mechanism of unconventional superconductivity. One crucial evidence is the neutron spin resonance arising in the superconducting state, which is…

A spin decoherence mechanism is proposed for localized electrons. The irregular phonon phase disturbances originated from phonon relaxation can influence electron spin precession with a net effect of spin phase decay. A quantitative…

材料科学 · 物理学 2007-05-23 Y. G. Semenov , K. W. Kim

Space- and time-resolved measurements of spin drift and diffusion are performed on a GaAs-hosted two-dimensional electron gas. For spins where forward drift is compensated by backward diffusion, we find a precession frequency in absence of…

介观与纳米尺度物理 · 物理学 2016-05-11 P. Altmann , F. G. G. Hernandez , G. J. Ferreira , M. Kohda , C. Reichl , W. Wegscheider , G. Salis

The carrier spin and impurity spin densities in diluted magnetic semiconductors are considered using a semiclassical approach. Equations of motions for the spin densities and the carrier spin current density in the paramagnetic phase are…

材料科学 · 物理学 2009-11-10 C. Timm , F. von Oppen , F. Höfling

We show that the spins of all electrons, each confined in a quantum dot of an (In,Ga)As/GaAs dot ensemble, can be driven into a single mode of precession about a magnetic field. This regime is achieved by allowing only a single mode within…

介观与纳米尺度物理 · 物理学 2015-05-13 A. Greilich , S. Spatzek , I. A. Yugova , I. A. Akimov , D. R. Yakovlev , Al. L. Efros , D. Reuter , A. D. Wieck , M. Bayer

In inversion asymmetric semiconductors, spin-orbit interactions give rise to very effective relaxation mechanisms of the electron spin. Recent work, based on the dimensionally constrained D'yakonov Perel' mechanism, describes increasing…

介观与纳米尺度物理 · 物理学 2015-05-18 Alexander W. Holleitner

Spin ice magnetic monopoles are fractionalized emergent excitations in a class of frustrated magnets called spin ices. The classical spin ice model has an extensive number of ground state spin configurations, whereas magnetic monopoles can…

强关联电子 · 物理学 2018-07-09 Olga Petrova

A theory of electron spin relaxation in semiconducting carbon nanotubes is developed based on the hyperfine interaction with disordered nuclei spins I=1/2 of $^{13}$C isotopes. It is shown that strong radial confinement of electrons…

材料科学 · 物理学 2009-11-11 Y. G. Semenov , K. W. Kim , G. J. Iafrate

The spin density matrix for spin-3/2 hole systems can be decomposed into a sequence of multipoles which has important higher-order contributions beyond the ones known for electron systems [R. Winkler, Phys. Rev. B \textbf{70}, 125301…

其他凝聚态物理 · 物理学 2009-11-11 Dimitrie Culcer , C. Lechner , R. Winkler

We employ a self-consistent Green's function approach to investigate the spin-wave relaxation \Gamma(p) in diluted magnetic semiconductors. We find the trend of the spin-wave relaxation strongly depends on the ratio of the itinerant and…

材料科学 · 物理学 2009-11-11 J. E. Bunder , Shih-Jye Sun , Hsiu-Hau Lin

We derive a drift-diffusion equation for spin polarization in semiconductors by consistently taking into account electric-field effects and nondegenerate electron statistics. We identify a high-field diffusive regime which has no analogue…

材料科学 · 物理学 2009-11-07 Z. G. Yu , M. E. Flatte

A fully microscopic theory of electron spin relaxation by the D'yakonov-Perel' type spin-orbit coupling is developed for a semiconductor quantum well with a magnetic field applied in the growth direction of the well. We derive the Bloch…

凝聚态物理 · 物理学 2009-11-07 Vadim I. Puller , Lev G. Mourokh , Norman J. M. Horing , Anatoly Yu. Smirnov

The observation of an unusual spin resonant excitation in the superconducting state of various High-Tc ~copper oxides by inelastic neutron scattering measurements is reviewed. This magnetic mode % (that does not exist in conventional…

超导电性 · 物理学 2009-11-10 Y. Sidis , S. Pailhès , B. Keimer , P. Bourges , C. Ulrich , L. P. Regnault

We first predict the splitting of a spin degenerate impurity level when this impurity is irradiated by a circularly polarized laser beam tuned in the transparency region of a semiconductor. This splitting, which comes from different…

介观与纳米尺度物理 · 物理学 2009-11-10 M. Combescot , O. Betbeder-Matibet

We have studied the low energy spin excitations in n-type CdMnTe based dilute magnetic semiconductor quantum wells. For magnetic fields for which the energies for the excitation of free carriers and Mn spins are almost identical an…

New stable modes of spin precession have been observed in superfluid 3He-B. These dynamical order parameter states include precession with a magnetization S=pS_{eq} which is different from the equilibrium value S_{eq}. We have identified…

凝聚态物理 · 物理学 2009-10-28 V. V. Dmitriev , I. V. Kosarev , M. Krusius , D. V. Ponarin , V. M. H. Ruutu , G. E. Volovik

Long spin coherence times of carriers are essential for implementing quantum technologies using semiconductor devices for which, however, a possible obstacle is spin relaxation. For the spin dynamics, decisive features are the band…

We present a two-fluid description for iron-based superconductors, which contains an itinerant electron Fermi-liquid and a local moment spin-liquid, coupled together via an effective Hund's rule interaction. We examine the low-energy…

超导电性 · 物理学 2014-03-07 Yi-Zhuang You , Zheng-Yu Weng

We present a theoretical study of diluted magnetic semiconductors that includes spin-orbit coupling within a realistic host band structure and treats explicitly the effects of disorder due to randomly substituted Mn ions. While spin-orbit…

无序系统与神经网络 · 物理学 2009-11-13 Byounghak Lee , Xavier Cartoixa , Nandini Trivedi , Richard M. Martin