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Open AccessJournal ArticleDOI

Improved Upper Limit on the Neutrino Mass from a Direct Kinematic Method by KATRIN

M. Aker, +208 more
- 13 Sep 2019 - 
- Vol. 123, Iss: 22, pp 221802
TLDR
An upper limit of 1.1 eV (90% confidence level) is derived on the absolute mass scale of neutrinos on the Karlsruhe Tritium Neutrino experiment KATRIN, which improves upon previous mass limits from kinematic measurements by almost a factor of 2 and provides model-independent input to cosmological studies of structure formation.
Abstract
We report on the neutrino mass measurement result from the first four-week science run of the Karlsruhe Tritium Neutrino experiment KATRIN in spring 2019. Beta-decay electrons from a high-purity gaseous molecular tritium source are energy analyzed by a high-resolution MAC-E filter. A fit of the integrated electron spectrum over a narrow interval around the kinematic end point at 18.57 keV gives an effective neutrino mass square value of (-1.0_{-1.1}^{+0.9})  eV^{2}. From this, we derive an upper limit of 1.1 eV (90% confidence level) on the absolute mass scale of neutrinos. This value coincides with the KATRIN sensitivity. It improves upon previous mass limits from kinematic measurements by almost a factor of 2 and provides model-independent input to cosmological studies of structure formation.

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Annual Review of Nuclear and Particle Science

TL;DR: In a recent review as mentioned in this paper, the authors reflect some of the shifts of emphasis that are occurring among the fields of astrophysics, nuclear physics, and elementary particle physics and discuss the role of rotational degrees of freedom in heavy-ion collisions at low and moderate energies.
Journal ArticleDOI

Completed SDSS-IV extended Baryon Oscillation Spectroscopic Survey: cosmological implications from two decades of spectroscopic surveys at the Apache Point Observatory

Shadab Alam, +105 more
- 28 Apr 2021 - 
TL;DR: In this article, the authors present the cosmological implications from final measurements of clustering using galaxies, quasars, and Lyα forests from the completed SDSS lineage of experiments in large-scale structure.
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Global constraints on absolute neutrino masses and their ordering

TL;DR: In this article, the authors discuss current limits on absolute neutrino mass observables by performing a global data analysis that includes the latest results from oscillation experiments, including the latest decay bounds from the KamLAND-Zen experiment, and constraints from representative combinations of Planck measurements and other cosmological data sets.
Journal ArticleDOI

2020 global reassessment of the neutrino oscillation picture

TL;DR: In this article, the authors presented an updated global fit of neutrino oscillation data in the simplest three-neutrino framework, which showed a strong preference for the normal neutrinos mass ordering with 25σ statistical significance.
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Cosmological Parameters from the BOSS Galaxy Power Spectrum

TL;DR: In this paper, the authors present cosmological parameter measurements from the publicly available Baryon Oscillation Spectroscopic Survey (BOSS) data on anisotropic galaxy clustering in Fourier space, using a complete perturbation theory model that properly takes into account the nonlinear effects of dark matter clustering, short-scale physics, galaxy bias, redshift space distortions, and large-scale bulk flows.
References
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Journal ArticleDOI

APS : Review of Particle Physics, 2018-2019

Masaharu Tanabashi, +230 more
- 17 Aug 2018 - 
TL;DR: The complete review as discussed by the authors is published online on the website of the Particle Data Group (http://pdg.lbl.gov) and in a journal. Volume 1 is available in print as thePDG Book.
Journal ArticleDOI

Evidence for oscillation of atmospheric neutrinos

Y. Fukuda, +124 more
Abstract: We present an analysis of atmospheric neutrino data from a 33.0 kton yr (535-day) exposure of the Super-Kamiokande detector. The data exhibit a zenith angle dependent deficit of muon neutrinos which is inconsistent with expectations based on calculations of the atmospheric neutrino flux. Experimental biases and uncertainties in the prediction of neutrino fluxes and cross sections are unable to explain our observation. The data are consistent, however, with two-flavor ${\ensuremath{ u}}_{\ensuremath{\mu}}\ensuremath{\leftrightarrow}{\ensuremath{ u}}_{\ensuremath{\tau}}$ oscillations with ${sin}^{2}2\ensuremath{\theta}g0.82$ and $5\ifmmode\times\else\texttimes\fi{}{10}^{\ensuremath{-}4}l\ensuremath{\Delta}{m}^{2}l6\ifmmode\times\else\texttimes\fi{}1{0}^{\ensuremath{-}3}\mathrm{eV}{}^{2}$ at 90% confidence level.
Journal ArticleDOI

Unified approach to the classical statistical analysis of small signals

TL;DR: In this article, a classical confidence belt construction is proposed to unify the treatment of upper confidence limits for null results and two-sided confidence intervals for non-null results for Gaussian processes with background and Gaussian errors with a bounded physical region.
Journal ArticleDOI

Direct evidence for neutrino flavor transformation from neutral current interactions in the Sudbury Neutrino Observatory

Q. R. Ahmad, +205 more
TL;DR: Observations of neutral-current nu interactions on deuterium in the Sudbury Neutrino Observatory are reported, providing strong evidence for solar nu(e) flavor transformation.
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Asymptotic formulae for likelihood-based tests of new physics

TL;DR: In this paper, the authors describe likelihood-based statistical tests for use in high energy physics for the discovery of new phenomena and for construction of confidence intervals on model parameters, focusing on the properties of the test procedures that allow one to account for systematic uncertainties.
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