Area of research
Atomic and Molecular Physics, and Optics · Nuclear and High Energy Physics
Research interest
Research focused on Optics and Optical rectification, with related work in Supercontinuum, Terahertz radiation, Lithium niobate. Notable publications include 'Terahertz-driven linear electron acceleration', 'High conversion efficiency, high energy terahertz pulses by optical rectification in cryogenically cooled lithium niobate', and 'Coherent pulse synthesis: towards sub-cycle optical waveforms'.
Octave-spanning mid-infrared femtosecond OPA in a ZnGeP<sub>2</sub> pumped by a 2.4 μm Cr:ZnSe chirped-pulse amplifier
Highly-stable, High-power Picosecond Laser Optically Synchronized to a UV Photocathode Laser for an ICS Hard X-ray Generation
Generation and multi-octave shaping of mid-infrared intense single-cycle pulses
Laser-Induced Linear-Field Particle Acceleration in Free Space
Demonstration of an All-Optically Driven Sub-keV THz Gun
Water-window soft x-ray high-harmonic generation up to the nitrogen K-edge driven by a kHz, 2.1<i>μ</i>m OPCPA source
Terahertz-driven linear electron acceleration
Coherent pulse synthesis: towards sub-cycle optical waveforms
Three-octave-spanning supercontinuum generation and sub-two-cycle self-compression of mid-infrared filaments in dielectrics
Cryogenic Yb:YAG composite-thin-disk for high energy and average power amplifiers
Compact x-ray source based on burst-mode inverse Compton scattering at 100 kHz
Multi-mJ, kHz, 21 μm optical parametric chirped-pulse amplifier and high-flux soft x-ray high-harmonic generation
Highly efficient terahertz pulse generation by optical rectification in stoichiometric and cryo-cooled congruent lithium niobate
Efficient generation of ultra-intense few-cycle radially polarized laser pulses
High conversion efficiency, high energy terahertz pulses by optical rectification in cryogenically cooled lithium niobate
CEP-Stable, Few-Cycle, kHz OPCPAs for Attosecond Science: Energy Scaling and Coherent Sub-Cycle Pulse Synthesis