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20152026
most citedThe ReLiC: Recycling Linear Collider

5 citations · 6 across the 5 of their papers we have counts for

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7 papers · 1 filter

physics.acc-ph2026

Long Term Dynamics and Stability Studies for the High-energy Electron Cooler

Jonathan Unger, Georg H. Hoffstaetter, Alexei Fedotov +4

The Ring Electron Cooler (REC) is being developed for the Electron-Ion Collider to provide cooling at the top proton energy of 275GeV to reduce emittance growth from intra-beam sca…

physics.acc-ph2025

CW SRF Gun generating beam parameters sufficient for CW hard-X-ray FEL

Nikhil Bachhawat, Vladimir N. Litvinenko, Jean C. Brutus +7

SRF CW accelerator constructed for Coherent electron Cooling (CeC) Proof-of-principle (POP) experiment at Brookhaven National Laboratory has frequently demonstrated record paramete…

physics.acc-ph2023

Improved Calibration of RF Cavities for Relativistic Electron Beams: Effects of Secondary Corrections and Experimental Verification

K. Shih, I. Petrushina, V. N. Litvinenko +5

In the aspect of longitudinal beam bunching, the bunching strength can be controlled by the RF cavity phase and voltage. However, these machine parameters are different from those…

physics.acc-ph2019

Plasma-Cascade Instability- theory, simulations and experiment

Vladimir N. Litvinenko, Gang Wang, Yichao Jing +5

In this letter we describe a new micro-bunching instability occurring in charged particle beams propagating along a straight trajectory: based on the dynamics we named it a Plasma…

physics.acc-ph2019

Solenoid: universal tool for measuring beam parameters

Igor Pinayev, Yichao Jing, Dmitry Kayran +5

Solenoids are frequently used for focusing of the low energy electron beams. In this paper we focus on using these magnets as a nearly universal tool for measuring beam parameters…

physics.acc-ph2018

Plasma-Cascade micro-bunching Amplifier and Coherent electron Cooling of a Hadron Beams

V. N. Litvinenko, G. Wang, D. Kayran +3

In this paper we describe an instability, which we called a Plasma-Cascade Amplifier, occurring in electron beams propagating along a straight trajectory.