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physics.plasm-ph2026

Single-Shot Intensity-Correlation Diffractive X-ray Imaging of ICF Plasmas

Kenan Qu, Daniel Bhatti, Nathaniel J. Fisch

X-ray radiography of inertial confinement fusion plasmas is currently limited to several-micron resolution by geometric blur, diffraction, and photon-throughput tradeoffs. We propo…

physics.plasm-ph2026

Detecting Solenoidal Plasma Turbulence via Laser Polarization Rotation

Kenan Qu, Nathaniel J. Fisch

Recent theoretical studies suggest that solenoidal turbulence can significantly enhance fusion reactivity, yet no standard diagnostic exists to directly measure these solenoidal fl…

physics.plasm-ph2025

Ultra-strong Quantum Squeezing Mediated by Plasma Waves

Kenan Qu, Nathaniel J. Fisch

Quantum squeezed states enable precision measurements beyond the standard quantum limit, but conventional solid-state media fundamentally limit pump intensities to the ionization t…

physics.plasm-ph2024

Designing a Validation Experiment for Radio Frequency Condensation

Lanke Fu, E. Litvinova Mitra, R. Nies +18

Theoretical studies have suggested that nonlinear effects can lead to "radio frequency condensation", which coalesces RF power deposition and driven current near the center of a ma…

physics.plasm-ph20241 cited

Producing entangled photon pairs and quantum squeezed states in plasmas

Kenan Qu, Nathaniel J. Fisch

Plasma is capable of mediating the conversion of two pump photons into two different photons through a relativistic four-wave mixing nonlinearity. Spontaneously created photon pair…

physics.plasm-ph2023

On parallel laser beam merger in plasmas

K. V. Lezhnin, Kenan Qu, N. J. Fisch +1

Self-focusing instability is a well-known phenomenon of nonlinear optics, which is of great importance in the field of laser-plasma interactions. Self-focusing instability leads to…