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Magnetic microcalorimeters (MMCs) are cryogenic, energy-dispersive single-particle detectors providing excellent energy resolution, intrinsically fast signal rise time, quantum efficiency close to 100\%, large dynamic range as well as…

Metallic magnetic calorimeters (MMCs) are widely used for various experiments in fields ranging from atomic and nuclear physics to x-ray spectroscopy, laboratory astrophysics or material science. Whereas in previous experiments single pixel…

Instrumentation and Detectors · Physics 2015-06-17 S. Kempf , M. Wegner , L. Gastaldo , A. Fleischmann , C. Enss

Recent advances in the development of cryogenic particle detectors such as magnetic microcalorimeters (MMCs) allow the fabrication of sensor arrays with an increasing number of pixels. Since these detectors must be operated at the lowest…

Instrumentation and Detectors · Physics 2025-10-22 T. Muscheid , R. Gartmann , N. Karcher , F. Schuderer , M. Neidig , L. E. Ardila-Perez , M. Balzer , S. Kempf , O. Sander

In this work, we report the experimental readout results of a {\mu}MUX device using a Direct-RF SDR prototype based on the ZCU216 Radio-Frequency System-on-Chip (RFSoC) evaluation board. First, the analog performance of the SDR system was…

The readout system with a high multiplexing ratio has become a bottleneck limiting the application of large-scale Transition Edge Sensor (TES) detector arrays. In recent years, the microwave superconducting quantum interference device…

Metallic magnetic micro-calorimeters (MMCs) operated at millikelvin temperature offer the possibility to achieve eV-scale energy resolution with high stopping power for X-rays and massive particles in an energy range up to several tens of…

Metallic magnetic calorimeters (MMCs) are cryogenic detectors that offer an excellent energy resolution, a signal rise time of <100 ns, a high dynamic range and almost optimal linearity. MMCs are of high interest for many experiments. One…

Instrumentation and Detectors · Physics 2019-09-04 Oliver Sander , Nick Karcher , Oliver Krömer , Marc Weber , Sebastian Kempf , Mathias Wegner , Christian Enss

Large arrays of cryogenic detectors, including transition-edge sensors (TESs) or magnetic micro-calorimeters (MMCs), are needed for future experiments across a wide range of applications. Complexities in integration and cryogenic wiring…

Instrumentation and Detectors · Physics 2020-01-10 C. Yu , A. Ames , S. Chaudhuri , C. Dawson , K. D. Irwin , S. E. Kuenstner , D. Li , C. J. Titus

The Microwave SQUID Multiplexer ({\mu}MUX) is the device of choice for the readout of a large number of Low-Temperature Detectors in a wide variety of experiments within the fields of astronomy and particle physics. While it offers large…

The microwave SQUID multiplexer (umux) has enabled higher bandwidth or higher channel counts across a wide range of experiments in particle physics, astronomy, and spectroscopy. The large multiplexing factor coupled with recent commercial…

We present a hybrid microwave SQUID multiplexer that combines two frequency-division multiplexing techniques to allow multiplexing a given number of cryogenic detectors with only a fraction of frequency encoding resonators. Similar to…

Instrumentation and Detectors · Physics 2022-05-04 Constantin Schuster , Mathias Wegner , Christian Enss , Sebastian Kempf

A technological milestone for experiments employing Transition Edge Sensor (TES) bolometers operating at sub-kelvin temperature is the deployment of detector arrays with 100s--1000s of bolometers. One key technology for such arrays is…

Microwave Kinetic Inductance Detectors (MKIDs) are the most attractive radiation detectors for far-infrared and sub-mm astronomy: They combine ultimate sensitivity with the possibility to create very large detector arrays, in excess of 10…

Instrumentation and Methods for Astrophysics · Physics 2016-04-04 Joris van Rantwijk , Martin Grim , Dennis van Loon , Stephen Yates , Andrey Baryshev , Jochem Baselmans

The SLAC Microresonator Radio Frequency (SMuRF) electronics is being deployed as the readout for the Cosmic Microwave Background (CMB) telescopes of the Simons Observatory (SO). A Radio Frequency System-on-Chip (RFSoC) based readout of…

Instrumentation and Methods for Astrophysics · Physics 2024-06-21 Chao Liu , Zeeshan Ahmed , Shawn W. Henderson , Ryan Herbst , Larry Ruckman , Thomas Satterthwaite

Microwave SQUID Multiplexing (uMUX) is a widely used technique in the low temperature detectors community as it offers high capacity of reading out large scale Transition-Edge Sensor (TES) arrays. In this paper, we propose a Sliding Flux…

High Energy Physics - Experiment · Physics 2025-02-19 Guofu Liao , Congzhan Liu , Zhengwei Li , Daikang Yan , Xiangxiang Ren , Yongjie Zhang , Laiyu Zhang , Yu Xu , Shibo Shu , He Gao , Yifei Zhang , Xuefeng Lu , Xufang Li , He Xu , Di Wu

We describe the newest generation of the SLAC Microresonator RF (SMuRF) electronics, a warm digital control and readout system for microwave-frequency resonator-based cryogenic detector and multiplexer systems such as microwave SQUID…

The search for primordial B-modes in the cosmic microwave background (CMB) requires highly sensitive and scalable detector systems. The magnetic microbolometer (MMB) is an emerging detector concept that exploits the magnetic properties of…

Instrumentation and Detectors · Physics 2025-09-30 N. Müller , J. Bonilla-Neira , J. Geria , M. García Redondo , L. Ferreyro , M. Hampel , M. Wegner , A. Almela , S. Kempf

Superconducting microcalorimeters, such as superconducting transition-edge sensors and magnetic microcalorimeters, have emerged as state-of-the-art detectors for X-ray emission spectroscopy by combining near-unity quantum efficiency with…

Instrumentation and Detectors · Physics 2026-04-29 Jodok Zeuner , Constantin Schuster , Sebastian Kempf

Arrays of low-temperature microcalorimeters provide a promising technology for X-ray astrophysics: the imaging spectrometer. A camera with at least several thousand pixels, each of which has an energy-resolving power ($E/\Delta…

Instrumentation and Methods for Astrophysics · Physics 2022-09-14 H. Akamatsu , W. B. Doriese , J. A. B. Mates , B. D. Jackson
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