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20242026
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physics.optics2025

Charged-particle control via spatio-temporally tailored pulses from gas-based nonlinear optics

Hao Zhang, Joshua Mann, James Rosenzweig +2

Gas-filled waveguides enable few-cycle, spatio-temporally coupled (STC) pulses with programmable structure, opening new routes to control charged particles with optical fields. Thi…

physics.optics20251 cited

Deep Learning Assisted Modeling for Nonlinear Optics

Jack Hirschman, Erfan Abedi, Minyang Wang +6

Modeling second-order () nonlinear optical processes remains computationally expensive due to the need to resolve fast field oscillations and simulate wave propagation us…

physics.optics20251 cited

Antisymmetric chirp transfer to high-energy ultraviolet pulses via gas-based chirped four-wave mixing

Linshan Sun, Hao Zhang, Cameron Leary +5

Spectro-temporal shaping of high-power femtosecond ultraviolet (UV) pulses remains a key challenge in ultrafast optics. Tailoring high-energy, ultrashort UV pulses underpins applic…

physics.optics2025

Nonlinear Shaping in the Picosecond Gap

Randy Lemons, Jack Hirschman, Hao Zhang +2

Lightwave pulse shaping in the picosecond regime has remained unaddressed because it resides beyond the limits of state-of-the-art techniques, either due to its inherently narrow s…

physics.optics2024

Optimizing Spectral Phase Transfer in Four-Wave Mixing with Gas-filled Capillaries: A Trade-off Study

Hao Zhang, Linshan Sun, Jack Hirschman +3

Four-wave mixing (FWM) in gas-filled hollow-core capillaries, a nonlinear optical process that mixes signal and pump photon frequencies to generate idler frequency photons, offers…