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Authors whose works are in public domain in at least one jurisdiction

List of works by Alexander Zholents

Beam dynamics issues for the two-frequency crab cavity short pulse scheme

scholarly article

Comment on “Intense Superradiant X Rays from a Compact Source Using a Nanocathode Array and Emittance Exchange”

scientific article published on July 3, 2013

Demonstration of self-seeding in a hard-X-ray free-electron laser

article published in 2012

Experimental Observation of Energy Modulation in Electron Beams Passing through Terahertz Dielectric Wakefield Structures

scientific article published on 05 April 2012

Experimental demonstration of energy-chirp compensation by a tunable dielectric-based structure

scientific article published on 18 March 2014

Generation of subpicosecond X-ray pulses using RF orbit deflection

scholarly article

High power terahertz radiation source based on electron beam wakefields

scientific article published on February 1, 2013

Observation of High Transformer Ratio of Shaped Bunch Generated by an Emittance-Exchange Beam Line

scientific article published on 01 March 2018

Obtaining two attosecond pulses for X-ray stimulated Raman spectroscopy

scientific article published in 2010

Phase-Stable Self-Modulation of an Electron Beam in a Magnetic Wiggler

scientific article published on 01 November 2019

Precision Control of the Electron Longitudinal Bunch Shape Using an Emittance-Exchange Beam Line

scientific article published on 09 March 2017

Preface to Special Topic: Intense terahertz sources for time-resolved studies of matter

scientific article published on February 1, 2013

Stability condition for the drive bunch in a collinear wakefield accelerator

scholarly article published on 5 March 2018

Subpicosecond bunch train production for a tunable mJ level THz source

scientific article published on 25 September 2013

Thermionic microwave gun for terahertz and synchrotron light sources

scientific article published on 01 April 2020

Tunable isolated attosecond X-ray pulses with gigawatt peak power from a free-electron laser

scientific article published in 2019