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Metallic Magnetic Calorimeters
Magnetic calorimeters employ the magnetization of a paramagnetic sensor to detect temperature changes produced by the absorption of X-rays or other... -
Modification of the Metallic Magnetic Calorimeter Fabrication Process for High Production Yield
We have modified the fabrication processes of metallic magnetic calorimeters (MMCs) to improve production yield. Key modifications include (i) the...
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Plasma-Chemical Facility for Synthesis of Micro- and Nanoparticles Having Controlled Compositions and Structures on the Basis of a Microwave Discharge in the Gyrotron Radiation
We present a description of a plasma-chemical facility designed for synthesis of micro- and nanoparticles using the radiation of a high-power...
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Transition Edge Sensors X-ray Spectrometers: Applications for X-ray Astronomy
Cryogenic Transition Edge Sensors (TESs) based X-ray microcalorimeter (TESs calorimeter) is one of most promising detector types that is able to... -
From ECHo-1k to ECHo-100k:Optimization of High-Resolution Metallic Magnetic Calorimeters with Embedded 163Ho for Neutrino Mass Determination
The ECHo experiment aims at determining the effective electron neutrino mass by analyzing the endpoint of the 163 Ho electron capture spectrum. High...
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Effects of oxygen on amorphous formation, magnetic properties and bending ductility in FeBCCu amorphous alloy
Owing to the excellent magnetic properties, Fe-based nanocrystalline alloys are one of promising materials. However, the magnetization–brittleness...
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Magnetic and structural properties of AlN-Co-Fe thin films prepared by two-facing-target type DC sputtering (TFTS) system
AlN is a wide band gap promising material for applications due to its large thermal conductivity, negative electron affinity, and for its insulating...
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Cryogenic particle detection based on magnetic microcalorimeters for rare event searches
Magnetic microcalorimeters (MMCs) have become essential components of many science applications requiring high-resolution detection. MMCs serve as...
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A Comprehensive Review for Micro/Nanoscale Thermal Map** Technology Based on Scanning Thermal Microscopy
Thermal characterization becomes challenging as the material size is reduced to micro/nanoscales. Based on scanning probe microscopy (SPM), scanning...
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Transition-Edge Sensors
In recent years, superconducting transition-edge sensors (TES) have emerged as powerful, energy-resolving detectors of single photons from the near... -
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Ferromagnetic Resonance Force Microscopy
The magnetic resonance force microscope (MRFM) is a novel scanning probe instrument that combines the three-dimensional imaging capabilities of... -
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MMC Array to Study X-Ray Transitions in Muonic Atoms
The QUARTET collaboration aims to significantly improve the precision of the absolute nuclear charge radii of light nuclei from Li to Ne by using an...
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Transition-Edge Sensors for Cryogenic X-ray Imaging Spectrometers
Large arrays of superconducting transition-edge sensor (TES) microcalorimeters are becoming the key technology for future space-based X-ray... -
Signal Readout for Transition-Edge Sensor X-ray Imaging Spectrometers
Arrays of low-temperature microcalorimeters provide a promising technology for X-ray astrophysics: the imaging spectrometer. A camera with at least... -
Time Projection Chambers for Gamma-Ray Astronomy
The detection of photons with energies greater than a few tenths of an MeV, interacting via Compton scattering and/or pair production, faces a number... -
The CMS Detector at the LHC
Founded in 1954 and located near the Franco-Swiss border west of Geneva, the Conseil Européen pour la Recherche Nucléaire (CERN), or European Council... -
Photodetectors for Gamma-Ray Astronomy
Photodetectors are widely employed as optical receivers to convert light into electrical signals in many applications ranging from communications to... -
Pair Production Detectors for Gamma-Ray Astrophysics
Electron-positron pair production is the essential process for high-energy γ-ray astrophysical observations. Following the pioneering OSO-3 counter...