Jake Bromage

Jake Bromage

University of Rochester

H-index: 35

North America-United States

About Jake Bromage

Jake Bromage, With an exceptional h-index of 35 and a recent h-index of 18 (since 2020), a distinguished researcher at University of Rochester, specializes in the field of Laser, optical engineering, nonlinear optics.

His recent articles reflect a diverse array of research interests and contributions to the field:

Degradation of temporal contrast from post-pedestal interference with a chirped pulse in an optical parametric amplifier

Actively cooled optical substrates for high average power reflective or diffractive optic

Temporal Contrast Degradation from Post-Pedestals Due to Optical Parametric Chirped-Pulse Amplification

Achieving 100 GW idler pulses from an existing petawatt optical parametric chirped pulse amplifier

High average power ultrafast laser technologies for driving future advanced accelerators

Final amplifier of an ultra-intense all-OPCPA system with 13-J output signal energy and 41% pump-to-signal conversion efficiency

Linear colliders based on laser-plasma accelerators

Ultra-Stable Optical Substrates for High-Average-Power Applications

Jake Bromage Information

University

Position

Sr. Scientist Laboratory for Laser Energetics

Citations(all)

4748

Citations(since 2020)

2080

Cited By

3251

hIndex(all)

35

hIndex(since 2020)

18

i10Index(all)

77

i10Index(since 2020)

40

Email

University Profile Page

Google Scholar

Jake Bromage Skills & Research Interests

Laser

optical engineering

nonlinear optics

Top articles of Jake Bromage

Degradation of temporal contrast from post-pedestal interference with a chirped pulse in an optical parametric amplifier

Optics Express

2024/3/25

Actively cooled optical substrates for high average power reflective or diffractive optic

2024/2/20

Temporal Contrast Degradation from Post-Pedestals Due to Optical Parametric Chirped-Pulse Amplification

2023/10/8

Achieving 100 GW idler pulses from an existing petawatt optical parametric chirped pulse amplifier

Optics Express

2023/2/27

High average power ultrafast laser technologies for driving future advanced accelerators

Journal of Instrumentation

2023/8/21

Final amplifier of an ultra-intense all-OPCPA system with 13-J output signal energy and 41% pump-to-signal conversion efficiency

Optics Express

2023/7/17

Linear colliders based on laser-plasma accelerators

Journal of Instrumentation

2023/6/1

Ultra-Stable Optical Substrates for High-Average-Power Applications

2023/5/7

Jake Bromage
Jake Bromage

H-Index: 17

Nonlinear Regenerative Amplifier with Net Negative Nonlinearity for Ultrashort-Pulse Generation

2023/5/7

Transforming the idler of an OPCPA system into a high-fidelity pulse

2023/5/7

Single-Shot Spatiotemporal Characterization Using Multispectral Wavefront Sensing

2023/5/7

Impact of Mid-Spatial Frequency Errors in Stretcher Optics on the Temporal Contrast of Short Optical Pulses

2023/5/7

Nonlinearity-tunable regenerative amplifier for ultrashort-pulse generation

2023/3/26

Advanced Photon Acceleration Schemes for Tunable XUV/Soft X-Ray Sources

2023/3/21

Intracavity Spectral Broadening Using Cascaded Quadratic Nonlinearities

2023/10/8

LLE and the Institute of Optics: advancing high-power lasers education at the University of Rochester

2023/3/17

Substrates for Multikilowatt Average-Power Compressor Gratings: Demonstration of the Actively Cooled “Flow-Cell” Concept

2022/12/11

Jake Bromage
Jake Bromage

H-Index: 17

Design and characterization of “flow-cell” integrated-flow active cooling for high-average-power ceramic optics

Optics Express

2022/11/7

High-resolution mapping of phase-matching conditions in second-order nonlinear crystals

Optical Materials Express

2022/9/1

Impact of the optical parametric amplification phase on laser pulse compression

Applied Optics

2022/5/1

Jake Bromage
Jake Bromage

H-Index: 17

See List of Professors in Jake Bromage University(University of Rochester)

Co-Authors

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