most citedHigher Order Nyquist Zone Sampling with RFSoC Data Converters for Astronomical and High Energy Physics Readout Systems

1 citations · 1 across the 5 of their papers we have counts for

collaborators

5 papers

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…

physics.acc-ph2025

High Precision RF Pulse Shaping with Direct RF Sampling for Future Linear Accelerators

Chao Liu, Ankur Dhar, Ryan Herbst +1

In various of particle accelerator designs, amplitude and phase modulation methods are commonly applied to shape the RF pulses for implementing pulse compressors or compensating fo…

physics.acc-ph2025

ESPPU INPUT: C within the "Linear Collider Vision"

Matthew B. Andorf, Mei Bai, Pushpalatha Bhat +34

The Linear Collider Vision calls for a Linear Collider Facility with a physics reach from a Higgs Factory to the TeV-scale with collisions. One of the technologies under…

astro-ph.IM20231 cited

Higher Order Nyquist Zone Sampling with RFSoC Data Converters for Astronomical and High Energy Physics Readout Systems

Chao Liu, Zeeshan Ahmed, Shawn W. Henderson +2

From generation to generation, the maximum RF frequency and sampling rate of the integrated data converters in RF system-on-chip (RFSoC) family devices from Xilinx increases signif…

astro-ph.IM2023

Evaluating Direct RF Sampling Performance for RFSoC-based Radio-frequency Astronomy Receivers

Chao Liu, Larry Ruckman, Ryan Herbst

As the maximum RF input and output frequencies of the integrated data converters in RFSoC increase, it becomes practical to digitize and synthesize RF signals in the majority of C…