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Related papers: PoGOLino: a scintillator-based balloon-borne neutr…

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PoGOLino is a scintillator-based neutron detector. Its main purpose is to provide data on the neutron flux in the upper stratosphere at high latitudes at thermal and nonthermal energies for the PoGOLite instrument. PoGOLite is a balloon…

PoGOLite is a balloon-borne hard X-ray polarimeter dedicated to the study of point sources. Compton scattered events are registered using an array of plastic scintillator units to determine the polarisation of incident X-rays in the energy…

Instrumentation and Methods for Astrophysics · Physics 2016-06-20 Maxime Chauvin , Miranda Jackson , Takafumi Kawano , Mózsi Kiss , Merlin Kole , Victor Mikhalev , Elena Moretti , Hiromitsu Takahashi , Mark Pearce

High energy polarization can be an indication of geometry, orientation, and other physical phenomena for a variety of sources, but has heretofore been a virtually unmeasured phenomenon. PoGOLite is a balloon-borne instrument intended to…

Instrumentation and Methods for Astrophysics · Physics 2013-05-03 Miranda Jackson , PoGOLite Collaboration

Polarization measurements in the X-ray and gamma-ray energy range can provide crucial information on massive compact objects such as black holes and neutron stars. The Polarized Gamma-ray Observer (PoGO) is a new balloon-borne instrument…

In the 50 years since the advent of X-ray astronomy there have been many scientific advances due to the development of new experimental techniques for detecting and characterising X-rays. Observations of X-ray polarisation have, however,…

PoGOLite is a hard X-ray polarimeter operating in the 25-100 keV energy band. The instrument design is optimised for the observation of compact astrophysical sources. Observations are conducted from a stabilised stratospheric balloon…

The physical processes postulated to explain the high-energy emission mechanisms of compact astrophysical sources often yield polarised soft gamma rays (X-rays). PoGOLite is a balloon-borne polarimeter operating in the 25-80 keV energy…

Instrumentation and Methods for Astrophysics · Physics 2019-08-13 Mark Pearce

The PoGO mission, including the PoGOLite Pathfinder and PoGO+, aims to provide polarimetric measurements of the Crab system and Cygnus X-1 in the hard X-ray band. Measurements are conducted from a stabilized balloon-borne platform, launched…

Instrumentation and Methods for Astrophysics · Physics 2018-03-07 M. Friis , M. Kiss , V. Mikhalev , M. Pearce , H. Takahashi

The Polarized Gamma-ray Observer (PoGOLite) is a balloon-borne instrument that can measure polarization in the energy range 25--240 keV. The instrument adopts an array of well-type "phoswich" detectors in order to suppress backgrounds.…

High Energy Astrophysical Phenomena · Physics 2019-08-15 Takafumi Kawano

Polarimetric observations of celestial sources in the hard X-ray band stand to provide new information on emission mechanisms and source geometries. PoGO+ is a Compton scattering polarimeter (20-150 keV) optimised for the observation of the…

Instrumentation and Methods for Astrophysics · Physics 2017-03-23 M. Chauvin , M. Friis , M. Jackson , T. Kawano , M. Kiss , V. Mikhalev , N. Ohashi , T. Stana , H. Takahashi , M. Pearce

Borexino is a liquid scintillator detector located at the Laboratori Nazionale del Gran Sasso, Italy with the main goal to measure solar neutrinos. The experiment recently provided the first direct experimental evidence of CNO-cycle…

Polarimetric studies of astrophysical sources can make important contributions to resolve the geometry of the emitting region and determine the photon emission mechanism. PoGOLite is a balloon-borne polarimeter operating in the hard X-ray…

Instrumentation and Methods for Astrophysics · Physics 2015-06-01 M. Chauvin , M. Jackson , T. Kawano , M. Kiss , M. Kole , V. Mikhalev , E. Moretti , H. Takahashi , M. Pearce

Indian Centre for Space Physics is engaged in studying terrestrial and extra-terrestrial high energy phenomena from meteorological balloon borne platforms. A complete payload system with such balloons is at the most about five kilograms of…

Instrumentation and Methods for Astrophysics · Physics 2019-09-12 Debashis Bhowmick , Sandip K. Chakrabarti , Ritabrata Sarkar , Arnab Bhattacharya , A. R. Rao

Borexino is a solar neutrino experiment designed to observe the 0.86 MeV Be-7 neutrinos emitted in the pp cycle of the sun. Neutrinos will be detected by their elastic scattering on electrons in 100 tons of liquid scintillator. The neutrino…

Borexino is a massive calorimetric liquid scintillation detector whose installation has been completed in the underground Gran Sasso Laboratory. The focus of the experiment is on the direct and real time measurement of the flux of neutrinos…

High Energy Physics - Experiment · Physics 2007-05-23 Lino Miramonti

Borexino is a large unsegmented calorimeter featuring 300 tons of liquid scintillator, contained in a 8.5 meter nylon vessel, viewed by 2200 PMTs. The main goal of Borexino is the study, in real time, of low energy solar neutrinos, and in…

High Energy Physics - Experiment · Physics 2017-08-23 Lino Miramonti

The Borexino experiment, located in the Gran Sasso National Laboratory, is an organic liquid scintillator detector conceived for the real time spectroscopy of low energy solar neutrinos. The data taking campaign phase I (2007 - 2010) has…

Borexino is a massive, calorimetric, liquid scintillator detector aimed at the detection of low energy sub-MeV solar neutrinos, installed at the Gran Sasso Laboratory. After several years of construction, data taking started in May 2007,…

High Energy Physics - Experiment · Physics 2008-10-02 G. Ranucci , Borexino Collaboration

BOREXINO, a real-time device for low energy neutrino spectroscopy is nearing completion of construction in the underground laboratories at Gran Sasso, Italy (LNGS). The experiment's goal is the direct measurement of the flux of 7Be solar…

High Energy Physics - Experiment · Physics 2008-11-26 Borexino Collaboration , G. Alimonti
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