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Related papers: Optimization of a laser ion source for $^{163}$Ho …

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The effective electron neutrino mass measurement at the ECHo experiment requires high purity $^{163}$Ho, which is ion implanted into detector absorbers. To meet the project specifications in efficiency and purity, the entire process chain…

Accelerator Physics · Physics 2019-10-02 Tom Kieck , Holger Dorrer , Christoph E. Düllmann , Vadim Gadelshin , Fabian Schneider , Klaus Wendt

The determination of the absolute scale of the neutrino masses is one of the most challenging present questions in particle physics. The most stringent limit, $m(\bar{\nu}_{\mathrm{e}})<2$eV, was achieved for the electron anti-neutrino mass…

The isotope $^{163}$Ho undergoes an electron capture process with a recommended value for the energy available to the decay, $Q_{\rm EC}$, of about 2.5 keV. According to the present knowledge, this is the lowest $Q_{\rm EC}$ value for…

Instrumentation and Detectors · Physics 2014-09-02 P. C. -O. Ranitzsch , C. Hassel , M. Wegner , S. Kempf , A. Fleischmann , C. Enss , L. Gastaldo , A. Herlert , K. Johnston

The determination of the absolute scale of the neutrino masses is one of the most challenging questions in particle physics. Different approaches are followed to achieve a sensitivity on neutrino masses in the sub-eV range. Among them,…

The analysis of the endpoint region of the calorimetrically measured $^{163}$Ho electron capture spectrum is a very promising way to determine the mass of the electron neutrino. The achievable sensitivity of $^{163}$Ho-based experiments and…

Instrumentation and Detectors · Physics 2014-09-15 Loredana Gastaldo

The ECHo experiment has been designed for the determination of the effective electron neutrino mass by means of the analysis of the end-point region of the Ho-163 electron capture spectrum. Metallic magnetic calorimeters enclosing Ho-163…

The electron capture in $^{163}\mathrm{Ho}$ experiment (ECHo) is designed to directly measure the effective electron neutrino mass by analysing the endpoint region of the $^{163}\mathrm{Ho}$ electron capture spectrum. We present a data…

Instrumentation and Detectors · Physics 2021-11-17 Robert Hammann , Arnulf Barth , Andreas Fleischmann , Dennis Schulz , Loredana Gastaldo

Calorimetric decay energy spectroscopy of electron-capture-decaying isotopes is a promising method to achieve the sensitivity required for electron neutrino mass measurement. The very low total nuclear decay energy (QEC < 3 keV) and short…

The electron-neutrino mass (or masses and mixing angles) may be directly measurable in weak electron-capture decays. The favoured experimental technique is "calorimetric". The optimal nuclide is $^{163}$Ho, and several experiments (ECHo,…

High Energy Physics - Phenomenology · Physics 2016-05-25 A. De Rújula , M. Lusignoli

The goal of the ECHo experiment is a direct determination of the absolute scale of the neutrino mass by the analysis of the end-point region of the Ho-163 electron capture (EC) spectrum. The results of the first phase of the experiment,…

Instrumentation and Detectors · Physics 2023-08-16 Federica Mantegazzini , Neven Kovac , Christian Enss , Andreas Fleischmann , Markus Griedel , Loredana Gastaldo

The neutrino mass can be extracted from a high statistics, high resolution calorimetric spectrum of electron capture in ${}^{163}$Ho. In order to better understand the shape of the calorimetric electron capture spectrum, a second isotope…

It is in principle possible to measure directly the electron neutrino mass (or masses and mixing angles) in weak electron-capture decays. The optimal nuclide in this respect is $^{163}$Ho. The favoured experimental technique, currently…

High Energy Physics - Phenomenology · Physics 2015-11-10 A. De Rújula , M. Lusignoli

For the first time we have investigated the behavior of fully micro-fabricated low temperature metallic magnetic calorimeters (MMCs) after undergoing an ion-implantation process. This experiment had the aim to show the possibility to…

Instrumentation and Detectors · Physics 2015-06-05 L. Gastaldo , P. Ranitzsch , F. von Seggern , J. -P. Porst , S. Schäfer , C. Pies , S. Kempf , T. Wolf , A. Fleischmann , C. Enss , A. Herlert , K. Johnston

We present a comprehensive phenomenological analysis of the calorimetric electron capture (EC) decay spectrum of $^{163}$Ho as measured by the HOLMES experiment. Using high-statistics data, we unfold the instrumental energy resolution from…

We have investigated the possibility of measuring the electron neutrino mass with sub-eV sensitivity by studying the electron capture decay of 163-Ho with cryogenic microcalorimeters. In this paper we will introduce an experiment's concept,…

Instrumentation and Detectors · Physics 2012-08-03 Massimiliano Galeazzi , Flavio Gatti , Maurizio Lusignoli , Angelo Nucciotti , Stefano Ragazzi , Maria Ribeiro Gomes

The European Research Council has recently funded HOLMES, a new experiment to directly measure the neutrino mass. HOLMES will perform a calorimetric measurement of the energy released in the decay of 163Ho. The calorimetric measurement…

HOLMES is a new experiment aiming at directly measuring the neutrino mass with a sensitivity below 2 eV. HOLMES will perform a calorimetric measurement of the energy released in the decay of $^{163}$Ho. The calorimetric measurement…

The HOLMES experiment will perform a precise calorimetric measurement of the end point of the Electron Capture (EC) decay spectrum of 163Ho in order to extract information on neutrino mass with a sensitivity below 2 eV. In its final…

Large calorimetric neutrino mass experiments using thermal detectors are possibly going to play a crucial role in the challenge for assessing the neutrino mass. This paper describe a tool based on Monte Carlo methods which has been…

Instrumentation and Detectors · Physics 2014-12-18 A. Nucciotti
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