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Results of decay studies of nuclei in the vicinity of 54Zn, which is the most neutron-deficient isotope of zinc and undergoes ground-state two-proton radioactivity (2p), are presented. The measurements were performed with a gaseous time…

The highest energies of solar energetic nucleons detected in space or through gamma-ray emission in the solar atmosphere are in the GeV range. Where and how the particles are accelerated is still controversial. We search for observational…

Solar and Stellar Astrophysics · Physics 2014-11-24 K. -L. Klein , S. Masson , C. Bouratzis , V. Grechnev , A. Hillaris , P. Preka-Papadema

SOlar Neutron TRACking (SONTRAC) is a detector concept based on a bundle of plastic scintillators by aiming at tracking the solar neutrons through the generation of the secondary particles such as protons from the (n, np) and (n, p)…

Instrumentation and Detectors · Physics 2024-12-04 Ahmet Ilker Topuz

Homestake, Gallex and GNO data reveal variability of the solar neutrino flux. Kamiokande records for 1996-2001 reveal oscillations at 9.43 and 12.6 yr$^{-1}$, well within a range (6-16 yr$^{-1}$) that, according to helioseismology, may be…

Solar and Stellar Astrophysics · Physics 2022-05-11 Peter A. Sturrock

Low-energy protons entering the field of view of the XMM-Newton telescope scatter with the X-ray mirror surface and might reach the X-ray detectors on the focal plane. They manifest in the form of a sudden increase in the rates, usually…

High Energy Astrophysical Phenomena · Physics 2025-01-31 T. Mineo , V. Fioretti , S. Lotti , S. Molendi , G. Lanzuisi , M. Cappi , M. Dadina , S. Ettori , F. Gastaldello , R. Amato

I give an overview of the recent developments in the solar neutrino field. I focus on the Borexino detector, which has uncovered the solar neutrino spectrum below 5 MeV, providing new tests and confirmation for solar neutrino oscillations.…

Solar and Stellar Astrophysics · Physics 2012-01-31 Alvaro Chavarria

Solar neutrinos interact within double-beta decay (\BB) detectors and contribute to backgrounds for \BB\ experiments. Background contributions due to charge-current solar neutrino interactions with \BB\ nuclei of $^{76}$Ge, $^{82}$Se,…

Nuclear Experiment · Physics 2017-10-25 S. R. Elliott , H. Ejiri

The presence of neutrinos from Boron decay in the flux observed on Earth is attested by the observation of their energy spectrum. Possible distortions of the spectrum investigated in current detectors are often interpreted in terms of…

High Energy Physics - Phenomenology · Physics 2009-10-31 R. Escribano , J. -M. Frere , A. Gevaert , D. Monderen

Largest Solar Neutrino Flare may be soon detectable by Deep Core neutrino detector immediately and comunicate to satellites or astronauts. Its detection is the fastest manifestation of a later (tens minutes,hours) dangerous cosmic shower.…

Solar and Stellar Astrophysics · Physics 2015-05-28 Daniele Fargion

Neutrinos generated during solar flares remain elusive. However, after $50$ years of discussion and search, the potential knowledge unleashed by their discovery keeps the search crucial. Neutrinos associated with solar flares provide…

Solar and Stellar Astrophysics · Physics 2020-10-12 K. Okamoto , Y. Nakano , S. Masuda , Y. Itow , M. Miyake , T. Terasawa , S. Ito , M. Nakahata

Solar neutrinos can interact with the source isotope in neutrinoless double beta decay experiments through charged current and neutral current interactions. The charged-current product nucleus will then beta decay with a Q-value larger than…

Nuclear Experiment · Physics 2015-06-17 H. Ejiri , S. R. Elliott

Geo-neutrinos, electron anti-neutrinos produced in beta decays of naturally occurring radioactive isotopes in the Earth, are a unique direct probe of our planet's interior. We report the first observation at more than 3$\sigma$ C.L. of…

High Energy Physics - Experiment · Physics 2012-08-27 Borexino Collaboration

To accurately quantify the effect of solar proton events (SPEs) on the atmosphere requires a good estimate of the particle energy deposition in the middle atmosphere (60- 100 km) and how the energy is distributed globally. Protons in the…

Space Physics · Physics 2016-11-28 H. Nesse Tyssøy , J. Stadsnes

A solar neutron detector has been launched on the Japan Exposure Module (JEM) of the International Space Station (ISS) in August 4, 2009. The detector works satsifactory. The detector comprises scintillation fiber and is designated as the…

Solar and Stellar Astrophysics · Physics 2009-09-08 K. Koga , T. Goka , H. Matsumoto , T. Obara , Y. Muraki , T. Yamamoto

Observations of a large solar flare of December 13, 2006, using Solar Optical Telescope (SOT) on Hinode spacecraft revealed high-frequency oscillations excited by the flare in the sunspot chromosphere. These oscillations are observed in the…

Astrophysics · Physics 2009-11-13 A. G. Kosovichev , T. Sekii

Solar energetic particles ionize the atmosphere, leading to production of nitrogen oxides. It has been suggested that some such events are visible as layers of nitrate in ice cores, yielding archives of energetic, high fluence solar proton…

Atmospheric and Oceanic Physics · Physics 2016-03-28 Adrian L. Melott , Brian C. Thomas , Claude M. Laird , Ben Neuenswander , Dimitra Atri

We investigate multi-spacecraft observations of the January 17, 2010 solar energetic particle event. Energetic electrons and protons have been observed over a remarkable large longitudinal range at the two STEREO spacecraft and SOHO…

Solar and Stellar Astrophysics · Physics 2016-11-11 Nina Dresing , Raúl Gómez-Herrero , Andreas Klassen , Bernd Heber , Yulia Kartavykh , Wolfgang Dröge

We have searched for proton decay via $p \rightarrow e^{+} \pi^{0}$ and $p \rightarrow \mu^{+} \pi^{0}$ using Super-Kamiokande data from April 1996 to March 2015, 0.306 megaton$\cdot$years exposure in total. The atmospheric neutrino…

High Energy Physics - Experiment · Physics 2017-01-11 M. Miura

Deep underground in Kolar Gold Fields, in southern India, an experiment to detect proton decay had been carried out since the end of 1980. Analysis of data yielded the following results; (l) the life time of proton is about 1 x 1031 years,…

High Energy Physics - Experiment · Physics 2007-05-23 H. Adarkar , S. R. Dugad , M. R. Krishnaswamy , M. G. K. Menon , B . V. Sreekantan , Y. Hayashi , N. Ito , S. Kawakami , S. Miyake , Y. Uchihori

During the 2010 rainy season in Yangbajing (4300 m above sea level) in Tibet, China, a long-duration count enhancement associated with thunderclouds was detected by a solar neutron telescope and neutron monitors installed at the Yangbajing…