Theory of spin-polarized bipolar transport in magnetic p-n junctions
arXiv:cond-mat/0205340 · doi:10.1103/PhysRevB.66.165301
Abstract
The interplay between spin and charge transport in electrically and magnetically inhomogeneous semiconductor systems is investigated theoretically. In particular, the theory of spin-polarized bipolar transport in magnetic p-n junctions is formulated, generalizing the classic Shockley model. The theory assumes that in the depletion layer the nonequilibrium chemical potentials of spin up and spin down carriers are constant and carrier recombination and spin relaxation are inhibited. Under the general conditions of an applied bias and externally injected (source) spin, the model formulates analytically carrier and spin transport in magnetic p-n junctions at low bias. The evaluation of the carrier and spin densities at the depletion layer establishes the necessary boundary conditions for solving the diffusive transport equations in the bulk regions separately, thus greatly simplifying the problem. The carrier and spin density and current profiles in the bulk regions are calculated and the I-V characteristics of the junction are obtained. It is demonstrated that spin injection through the depletion layer of a magnetic p-n junction is not possible unless nonequilibrium spin accumulates in the bulk regions--either by external spin injection or by the application of a large bias. Implications of the theory for majority spin injection across the depletion layer, minority spin pumping and spin amplification, giant magnetoresistance, spin-voltaic effect, biasing electrode spin injection, and magnetic drift in the bulk regions are discussed in details, and illustrated using the example of a GaAs based magnetic p-n junction.
36 pages, 11 figures, 2 tables
References in corpus (14)
- Efficient Electrical Spin Injection from a Magnetic Metal / Tunnel Barrier Contact into a Semiconductor
- Electrical Spin Injection in a Ferromagnetic / Tunnel Barrier/ Semiconductor Heterostructure
- Spin-polarized transport in inhomogeneous magnetic semiconductors: theory of magnetic/nonmagnetic p-n junctions
- Unconventional carrier-mediated ferromagnetism above room temperature in ion-implanted (Ga, Mn)P:C
- Spin Electronics and Spin Computation
- Quantum Transport in Nonuniform Magnetic Fields: Aharonov-Bohm Ring as a Spin Switch
- Spin-polarized Zener tunneling in (Ga,Mn)As
- Filtering spin with tunnel-coupled electron wave guides
- Large magnetoresistance effect due to spin-injection into a non-magnetic semiconductor
- A proposal for a spin-polarized solar battery
- Diffusion equation and spin drag in spin-polarized transport
- Ferromagnetic semiconductor (In,Ga,Mn)As with Curie temperature above 100 K
- Optical Pumping in Ferromagnet-Semiconductor Heterostructures: Magneto-optics and Spin Transport
- Complex impedance of a spin injecting junction
Cited by in corpus (48)
- Spintronics: Fundamentals and applications
- Semiconductor Spintronics
- Spin dynamics in semiconductors
- On A Proper Definition of Spin Current
- Theory of spin-polarized transport in semiconductor heterojunctions: Proposal for spin injection and detection in silicon
- Magnetic bipolar transistor
- Spin Accumulation in the Extrinsic Spin Hall Effect
- Semiclassical Monte Carlo Model for In-Plane Transport of Spin-Polarized Electrons in III-V Heterostructures
- Spin-polarized current amplification and spin injection in magnetic bipolar transistors
- Spin polarized electron transport near the Si/SiO2 interface
- The spin-torque transistor
- Theory of conserved spin current and its application to two dimensional hole gas
- Focusing of Spin Polarization in Semiconductors by Inhomogeneous Doping
- Negative Magnetoresistance in (In,Mn)As
- Theory of thermal spin-charge coupling in electronic systems
- Electron spin diffusion and transport in graphene
- Detection of spin voltaic effect in a p-n heterojunction
- Analytic theory of ground-state properties of a three-dimensional electron gas at varying spin polarization
- All-electrical measurement of spin injection in a magnetic - junction diode
- Slow Spin Relaxation in Two-Dimensional Electron Systems with Antidots
- Monte Carlo Modeling of Spin FETs Controlled by Spin-Orbit Interaction
- Spin Relaxation of Conduction Electrons in Semiconductors Due to Interaction with Nuclear Spins
- Bipolar spintronics: From spin injection to spin-controlled logic
- Spin diffusion/transport in -type GaAs quantum wells
- Current-voltage characteristics of semiconductor/ferromagnet junctions in the spin blockade regime
- Spin diffusion in Si/SiGe quantum wells: spin relaxation in the absence of D'yakonov-Perel' relaxation mechanism
- Probing Tunneling Spin Injection into Graphene via Bias Dependence
- The Ebers-Moll model for magnetic bipolar transistors
- Theory of the ac spin-valve effect
- Are spin junction transistors suitable for signal processing?
- Monte Carlo Simulation of Spin-Polarized Transport
- Optically induced electron spin currents in the Kretschmann configuration
- Spin injection in spin FETs using a step-doping profile
- Optically-Induced Suppression of Spin Relaxation in Two-Dimensional Electron Systems with Rashba Interaction
- Formation of double ring patterns on Co2MnSi Heusler alloy thin film by anodic oxidation under scanning probe microscope
- Magnetically induced spin-dependent photoemission from p-GaAs(Cs,O) into vacuum
- Gate-tunable spin exclusive or operation in a silicon-based spin device at room temperature
- Magnetic diode at = 300 K
- Spin diffusion in ultracold spin-orbit coupled K gas
- Rapid diffusion of electrons in GaMnAs
- Dynamical Hall responses of disordered superconductors
- Optical orientation in bipolar spintronic devices
- Spin dephasing in Silicon Germanium nanowires
- Iron-based n-type electron-induced ferromagnetic semiconductor
- Spin and electric currents induced by a spin-motive force in two-dimensional Dirac semimetals protected by nonsymmorphic symmetries
- Magnetism and nonlinear charge transport in NiFe2O4/γ-Al2O3/SrTiO3 heterostructure: Toward Spintronic Applications
- Propagation of Spin-Polarized Electrons Through Interfaces Separating Differently Doped Semiconductor Regions
- Giant magnetic pumping of photovoltage and photocurrent using dielectric lossy material