High repetition pump-and-probe photoemission spectroscopy based on a compact fiber laser system
arXiv:1612.03026 · doi:10.1063/1.4969053
Abstract
The paper describes a time-resolved photoemission (TRPES) apparatus equipped with a Yb-doped fiber laser system delivering 1.2-eV pump and 5.9-eV probe pulses at the repetition rate of 95 MHz. Time and energy resolutions are 11.3 meV and ~310 fs, respectively; the latter is estimated by performing TRPES on a highly oriented pyrolytic graphite (HOPG). The high repetition rate is suited for achieving high signal-to-noise ratio in TRPES spectra, thereby facilitating investigations of ultrafast electronic dynamics in the low pump fluence (p) region. TRPES of polycrystalline bismuth (Bi) at p as low as 30 nJ/mm2 is demonstrated. The laser source is compact and is docked to an existing TRPES apparatus based on a 250-kHz Ti:sapphire laser system. The 95-MHz system is less prone to space-charge broadening effects compared to the 250-kHz system, which we explicitly show in a systematic probe-power dependency of the Fermi cutoff of polycrystalline gold. We also describe that the TRPES response of an oriented Bi(111)/HOPG sample is useful for fine-tuning the spatial overlap of the pump and probe beams even when p is as low as 30 nJ/mm2.
References in corpus (13)
- Electric Field Effect in Atomically Thin Carbon Films
- A topological Dirac insulator in a quantum spin Hall phase : Experimental observation of first strong topological insulator
- Strong spin-orbit splitting on Bi surfaces
- Quantum Spin Hall Effect and Enhanced Magnetic Response by Spin-Orbit Coupling
- Ultrafast Optical Excitation of a Persistent Surface-State Population in the Topological Insulator Bi2Se3
- Silicon surface with giant spin-splitting
- Tracking Cooper Pairs in a Cuprate Superconductor by Ultrafast Angle-Resolved Photoemission
- High photon flux table-top coherent extreme ultraviolet source
- Transport Properties and Diamagnetism of Dirac Electrons in Bismuth
- Signatures of Electron Fractionalization in Ultraquantum Bismuth
- Transient excitons at metal surfaces
- Edge and Interfacial States in a 2D Topological Insulator:Bi(111) Bilayer on BiTeSe
- Time-resolved photoemission apparatus achieving sub-20-meV energy resolution and high stability
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