Michael Rosenberg

Michael Rosenberg

University of Rochester

H-index: 36

North America-United States

About Michael Rosenberg

Michael Rosenberg, With an exceptional h-index of 36 and a recent h-index of 26 (since 2020), a distinguished researcher at University of Rochester, specializes in the field of Inertial confinement fusion, high-energy-density physics, laser-plasma interactions, magnetic reconnection.

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

Achievement of target gain larger than unity in an inertial fusion experiment

Demonstration of hot-spot fuel gain exceeding unity in direct-drive inertial confinement fusion implosions

Experimental Evidence of Plasmoids in High- Magnetic Reconnection

Validation of implosion modeling through direct-drive shock timing experiments at the National Ignition Facility

X-ray imaging and electron temperature evolution in laser-driven magnetic reconnection experiments at the National Ignition Facility

Demonstration of a hydrodynamically equivalent burning plasma in direct-drive inertial confinement fusion

Identification of stimulated Raman side scattering in near-spherical coronal plasmas on OMEGA EP

Extended Biermann-Battery Fields via Proton Radiography with X-ray Fiducials

Michael Rosenberg Information

University

Position

Scientist Laboratory for Laser Energetics

Citations(all)

4143

Citations(since 2020)

2373

Cited By

2753

hIndex(all)

36

hIndex(since 2020)

26

i10Index(all)

75

i10Index(since 2020)

56

Email

University Profile Page

Google Scholar

Michael Rosenberg Skills & Research Interests

Inertial confinement fusion

high-energy-density physics

laser-plasma interactions

magnetic reconnection

Top articles of Michael Rosenberg

Achievement of target gain larger than unity in an inertial fusion experiment

Physical Review Letters

2024/2/5

Demonstration of hot-spot fuel gain exceeding unity in direct-drive inertial confinement fusion implosions

Nature Physics

2024/2/5

Experimental Evidence of Plasmoids in High- Magnetic Reconnection

Physical Review Letters

2024/1/18

Validation of implosion modeling through direct-drive shock timing experiments at the National Ignition Facility

Physical Review E

2024/4/24

X-ray imaging and electron temperature evolution in laser-driven magnetic reconnection experiments at the National Ignition Facility

arXiv preprint arXiv:2404.07799

2024/4/11

Demonstration of a hydrodynamically equivalent burning plasma in direct-drive inertial confinement fusion

Nature Physics

2024/2/5

Identification of stimulated Raman side scattering in near-spherical coronal plasmas on OMEGA EP

Physics of Plasmas

2023/2/1

Extended Biermann-Battery Fields via Proton Radiography with X-ray Fiducials

APS Division of Plasma Physics Meeting Abstracts

2023

Progress towards hydro-equivalent ignition in OMEGA direct-drive DT-layered implosions

APS Division of Plasma Physics Meeting Abstracts

2023

Evidence of Increased Laser Energy Coupling with Pure Silicon Ablators in Laser Direct-Drive Inertial Confinement Fusion Implosions

APS Division of Plasma Physics Meeting Abstracts

2023

Estimation of electron temperature using gated X-ray pinhole images of magnetic reconnection experiments at the NIF

APS Division of Plasma Physics Meeting Abstracts

2023

Statistical modeling of the fusion yield and areal density in DT-layered implosions on OMEGA

APS Division of Plasma Physics Meeting Abstracts

2023

Using Polar Direct Drive Experiments on the National Ignition Facility to Validate 2D Radiation-Hydrodynamic Energy Coupling Models

APS Division of Plasma Physics Meeting Abstracts

2023

Hot electron preheat mitigation in ignition-scale direct-drive ICF implosions on the NIF

APS Division of Plasma Physics Meeting Abstracts

2023

Laser-Direct-Drive Cryogenic Implosion Performance on OMEGAand Improvements to Illumination Uniformity and Ablation Pressure

APS Division of Plasma Physics Meeting Abstracts

2023

Design of Planar Heterogeneous Ablation Experiment on OMEGA

APS Division of Plasma Physics Meeting Abstracts

2023

Michael Rosenberg
Michael Rosenberg

H-Index: 24

3D simulations of polar direct drive wetted-foam capsules

APS Division of Plasma Physics Meeting Abstracts

2023

The Impact of the Beam-to-Target Ratio in Direct-Drive DT Cryogenic Implosions on OMEGA

APS Division of Plasma Physics Meeting Abstracts

2023

Comparison of Simulations to Measurements in Direct-Drive Energy Coupling Experiments on the National Ignition Facility

APS Division of Plasma Physics Meeting Abstracts

2023

A New Optimization Methodology for Polar Direct Drive Illuminations at the National Ignition Facility

arXiv preprint arXiv:2311.18342

2023/11/30

See List of Professors in Michael Rosenberg University(University of Rochester)

Co-Authors

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