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20162022
most citedLaser-Driven Electron Lensing in Silicon Microstructures

36 citations · 45 across the 4 of their papers we have counts for

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physics.acc-ph20222 cited

High Gradient Silicon Carbide Immersion Lens Ultrafast Electron Sources

Kenneth J. Leedle, Uwe Niedermayer, Eric Skär +5

We present two compact ultrafast electron injector designs with integrated focusing that provide high peak brightness of up to with 10s of electrons per las…

physics.acc-ph20224 cited

Beam Dynamics in Dielectric Laser Acceleration

U. Niedermayer, K. Leedle, P. Musumeci +1

We discuss recent developments and challenges of beam dynamics in Dielectric Laser Acceleration (DLA), for both high and low energy electron beams. Starting from ultra-low emittanc…

physics.acc-ph2020

Low Energy Spread Attosecond Bunching and Coherent Electron Acceleration in Dielectric Nanostructures

Uwe Niedermayer, Dylan S. Black, Kenneth J. Leedle +3

We demonstrate a compact technique to compress electron pulses to attosecond length, while keeping the energy spread reasonably small. The technique is based on Dielectric Laser Ac…

physics.acc-ph201936 cited

Laser-Driven Electron Lensing in Silicon Microstructures

Dylan S. Black, Kenneth J. Leedle, Yu Miao +3

We demonstrate a laser-driven, tunable electron lens fabricated in monolithic silicon. The lens consists of an array of silicon pillars pumped symmetrically by two 300 fs, 1.95

physics.acc-ph2016

Elements of a dielectric laser accelerator

Joshua McNeur, Martin Kozák, Norbert Schönenberger +11

The widespread use of high energy particle beams in basic research, medicine and coherent X-ray generation coupled with the large size of modern radio frequency (RF) accelerator de…