collaborators

8 papers

physics.acc-ph2026

Low Level RF and Timing System Design for the Cool Copper Collider

Chao Liu, Ankur Dhar, Martin Breidenbach +1

The Cool Copper Collider (C3) is a linear accelerator (LINAC) concept based on compact, high gradient, and normal conducting accelerator technology to support Higgs boson studies a…

physics.acc-ph2026

High-power Test and System Integration of Direct RF Sampling Based LLRF Control and Monitoring System for S-Band Accelerating Structures

Chao Liu, Ankur Dhar, Michael Hoganson +6

High precision Low-level RF (LLRF) control and monitoring systems for future particle accelerators will be a significant technical challenge as the requirements in performance, fle…

physics.acc-ph2026

High Power RF Pulse Shaping Tests with NG-LLRF and Cool Copper Collider Prototype Structure

Chao Liu, Ankur Dhar, Ronald Agustsson +4

RF pulse modulation techniques are widely applied to shape RF pulses for various types of RF stations of particle accelerators. The amplitude and phase modulations are typically im…

physics.acc-ph2025

Next generation direct RF sampling LLRF control and monitoring system for linear accelerators

C. Liu, E. Snively, R. Herbst +2

The low-level RF (LLRF) systems for linear accelerating structures are typically based on heterodyne architectures. The linear accelerators normally have many RF stations and multi…

physics.acc-ph2025

A Compact Low-level RF Control System for Advanced Concept Compact Electron Linear Accelerator

C. Liu, L. Ruckman, R. Herbst +11

A compact low-level RF (LLRF) control system based on RF system-on-chip (RFSoC) technology has been designed for the Advanced Concept Compact Electron Linear-accelerator (ACCEL) pr…

physics.acc-ph2025

Next Generation LLRF Control and Monitoring System for S-Band Linear Accelerators

Chao Liu, Ankur Dhar, Emma Snively +3

The low-level RF (LLRF) systems for S-band linear accelerating structures are typically implemented with heterodyne base architectures. We have developed and characterized the next…