Ultrafast supercontinuum fiber-laser based pump-probe scanning MOKE microscope for the investigation of electron spin dynamics in semiconductors at cryogenic temperatures with picosecond time and micrometer spatial resolution
arXiv:1310.3027 · doi:10.1063/1.4842276
Abstract
We describe a two-color pump-probe scanning magneto-optical Kerr effect (MOKE) microscope which we have developed to investigate electron spin phenomena in semiconductors at cryogenic temperatures with picosecond time and micrometer spatial resolution. The key innovation of our microscope is the usage of an ultrafast `white light' supercontinuum fiber-laser source which provides access to the whole visible and near-infrared spectral range. Our Kerr microscope allows for the independent selection of the excitation and detection energy while avoiding the necessity to synchronize the pulse trains of two separate picosecond laser systems. The ability to independently tune the pump and probe wavelength enables the investigation of the influence of excitation energy on the optically induced electron spin dynamics in semiconductors. We demonstrate picosecond real-space imaging of the diffusive expansion of optically excited electron spin packets in a (110) GaAs quantum well sample to illustrate the capabilities of the instrument.
10 pages, 4 figures
References in corpus (6)
- Spin Caloritronics
- Spin noise spectroscopy in GaAs (110) quantum wells: Access to intrinsic spin lifetimes and equilibrium electron dynamics
- Symmetry and spin dephasing in (110)-grown quantum wells
- Ambipolar spin diffusion and D'yakonov-Perel' spin relaxation in GaAs quantum wells
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Cited by in corpus (8)
- Persistent Spin Helix Manipulation by Optical Doping of a CdTe Quantum Well
- A High-Resolution Combined Scanning Laser- and Widefield Polarizing Microscope for Imaging at Temperatures from 4 K to 300 K
- Gate-Control of Anisotropic Spin Transport and Spin Helix Dynamics in a Modulation-Doped GaAs Quantum Well
- Spin helices in GaAs quantum wells: Interplay of electron density, spin diffusion, and spin lifetime
- Voigt effect-based wide-field magneto-optical microscope integrated in a pump-probe experimental setup
- Quasi-nondegenerate pump-probe magnetooptical experiment in GaAs/AlGaAs heterostructure based on spectral filtration
- Physically-inspired computational tools for sharp detection of material inhomogeneities in magnetic imaging
- Two-color Kerr microscopy of two-dimensional materials with sub-picosecond time resolution