Zitterbewegung of electrons in quantum wells and dots in presence of an in-plane magnetic field
arXiv:1201.5252 · doi:10.1088/0953-8984/24/18/185304
Abstract
We study the effect of an in-plane magnetic field on the zitterbewegung (ZB) of electrons in a semiconductor quantum well (QW) and in a quantum dot (QD) with the Rashba and Dresselhaus spin-orbit interactions. We obtain a general expression of the time-evolution of the position vector and current of the electron in a semiconductor quantum well. The amplitude of the oscillatory motion is directly related to the Berry connection in momentum space. We find that in presence of the magnetic field the ZB in a quantum well does not vanish when the strengths of the Rashba and Dresselhaus spin-orbit interactions are equal. The in-plane magnetic field helps to sustain the ZB in quantum wells even at low value of (where is the width of the Gaussian wavepacket and is the initial wave vector). The trembling motion of an electron in a semiconductor quantum well with high Lande g-factor (e.g. InSb) sustains over a long time, even at low value of . Further, we study the ZB of an electron in quantum dots within the two sub-band model numerically. The trembling motion persists in time even when the magnetic field is absent as well as when the strengths of the SOI are equal. The ZB in quantum dots is due to the superposition of oscillatory motions corresponding to all possible differences of the energy eigenvalues of the system. This is an another example of multi-frequency ZB phenomenon.
7 pages, 6 figures
References in corpus (14)
- An Exact SU(2) Symmetry and Persistent Spin Helix in a Spin-Orbit Coupled System
- Observing Zitterbewegung for photons near the Dirac point of a two-dimensional photonic crystal
- Dirac Equation and Quantum Relativistic Effects in a Single Trapped Ion
- Zitterbewegung of electronic wave packets in semiconductor nanostructures
- Observing Zitterbewegung in Ultracold Atoms
- Extremal transmission and beating effect of acoustic wave in two-dimensional sonic crystal
- Transient Zitterbewegung of charge carriers in graphene and carbon nanotubes
- Zitterbewegung (trembling motion) of electrons in semiconductors: a Review
- Wave packet dynamics in a monolayer graphene
- Oscillatory multiband dynamics of free particles: The ubiquity of zitterbewegung effects
- Atomic Zitterbewegung
- Non-relativistic limit in the 2+1 Dirac Oscillator: A Ramsey Interferometry Effect
- Persistent spin helix in Rashba-Dresselhaus two-dimensional electron systems
- Wave packet dynamics in 2DEG with spin orbit coupling: splitting and zitterbewegung
Cited by in corpus (10)
- Persistent Spin Textures in Semiconductor Nanostructures
- Dynamics of a quasiparticle in the -T model: Role of pseudospin polarization and transverse magnetic field on \textbf{\textit{zitterbewegung}}
- Wave packet dynamics and zitterbewegung of heavy holes in a quantizing magnetic field
- Langmuir waves dispersion in semi-relativistic spinless quantum plasmas
- near new Dirac points in graphene superlattice
- Spin force and the generation of sustained spin current in time-dependent Rashba and Dresselhauss systems
- Polarization and third-order Hall effect in III-V semiconductor heterojunctions
- Thermoelectric probe for Rashba spin-orbit interaction strength in a two dimensional electron gas
- Zitterbewegung-mediated RKKY coupling in topological insulator thin films
- Trembling motion of electrons driven by Larmor spin precession