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Indian Centre for Space Physics is engaged in long duration balloon borne experiments with typical payloads less than ~ 3kg. Low cost rubber balloons are used. In a double balloon system, the booster balloon lifts the orbiter balloon to its…

Balloon experiments are an economically feasible method of conducting observations in astronomy that are not possible from the ground. The astronomical payload may include a telescope, a detector, and a pointing/stabilization system.…

Indian Centre for Space Physics has taken a novel strategy to study low energy cosmic rays and astrophysical X-ray sources which involve very light weight payloads up to about five kilograms on board a single or multiple balloons which are…

Instrumentation and Methods for Astrophysics · Physics 2017-07-04 Sandip K. Chakrabarti , Ritabrata Sarkar , Debashis Bhowmick , Arnab Bhattacharya

Increasing interest in energetic particle effects on weather and climate has motivated development of a miniature scintillator-based detector intended for deployment on meteorological radiosondes or unmanned airborne vehicles. The detector…

Instrumentation and Detectors · Physics 2017-05-17 Karen L Aplin , Aaron A Briggs , R Giles Harrison , Graeme J Marlton

Indian Centre for Space Physics is engaged in pioneering balloon borne experiments with typical payloads less than ~ 3.5kg. Low cost rubber balloons are used to fly them to a height of about 40km. In a double balloon system, the booster…

High Energy Astrophysical Phenomena · Physics 2013-12-02 S K Chakrabarti , D Bhowmick , S Chakraborty , S Palit , S K Mondal , A Bhattacharya , S Midya , S Chakrabarti

We have initiated the High-Altitude Ballooning programme at Indian Institute of Astrophysics, Bangalore, in the year 2011 with the primary purpose of developing and flying low-cost scientific payloads on a balloon-borne platform. The main…

High-altitude balloon experiments are becoming very popular among universities and research institutes as they can be used for testing instruments eventually intended for space, and for simple astronomical observations of Solar System…

Instrumentation and Methods for Astrophysics · Physics 2021-02-10 Akaash Srikanth , Bharat Chandra , Binukumar G Nair , Nirmal K , Margarita Safonova , Shanti Prabha , Rekhesh Mohan , Jayant Murthy , Rajini G. K

We present the results of the first high-altitude balloon flight test of a concept for an advanced Compton telescope making use of modern scintillator materials with silicon photomultiplier (SiPM) readouts. There is a need in the fields of…

Instrumentation and Methods for Astrophysics · Physics 2016-02-25 P. F. Bloser , J. S. Legere , C. M. Bancroft , J. M. Ryan , M. L. McConnell

We have begun a program of high altitude ballooning at the Indian Institute of Astrophysics, Bangalore. Recent advances in balloons as well as in electronics have made possible scientific payloads at costs accessible to university…

Instrumentation and Methods for Astrophysics · Physics 2013-04-08 A. Nayak , A. G. Sreejith , M. Safonova , Jayant Murthy

We describe the development and implementation of a light-weight, fully autonomous 2-axis pointing and stabilization system designed for balloon-borne astronomical payloads. The system is developed using off-the-shelf components such as…

Instrumentation and Methods for Astrophysics · Physics 2016-12-19 K. Nirmal , A. G. Sreejith , Joice Mathew , Mayuresh Sarpotdar , Ambily Suresh , Ajin Prakash , Margarita Safonova , Jayant Murthy

The POLAR-2 mission consists of 3 instruments designed with the combined aim of producing a deeper understanding of Gamma-Ray Bursts. To achieve this, POLAR-2 relies on polarisation measurements and, for the first time will provide these…

Instrumentation and Methods for Astrophysics · Physics 2025-11-10 Merlin Kole , Nicolas de Angelis , Jiang He , Hongbang Liu , Jianchao Sun , Fei Xie , Jimmy Zaid

PoGOLino is a balloon-borne scintillator-based experiment developed to study the largely unexplored high altitude neutron environment at high geomagnetic latitudes. The instrument comprises two detectors that make use of LiCAF, a novel…

The ability to analyze and forecast stratospheric weather conditions is fundamental to addressing climate change. However, our capacity to collect data in the stratosphere is limited by sparsely deployed weather balloons. We propose a…

Machine Learning · Computer Science 2019-12-06 Kiwan Maeng , Iskender Kushan , Brandon Lucia , Ashish Kapoor

POLAR is a compact space-borne detector designed to perform reliable measurements of the polarization for transient sources like Gamma-Ray Bursts in the energy range 50-500keV. The instrument works based on the Compton Scattering principle…

A small scintillator-based detector for atmospheric ionization measurements has been developed, partly in response to a need for better ionization data in the weather-forming regions of the atmosphere and partly with the intention of…

Instrumentation and Detectors · Physics 2018-04-23 Karen Aplin , Aaron Briggs , Adam Baird , Peter Hastings , R. Giles Harrison , Graeme Marlton

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

The Probe Of Extreme Multi-Messenger Astrophysics (POEMMA) is a proposed dual-satellite mission to observe Ultra-High-Energy Cosmic Rays (UHECRs), increasing the statistics at the highest energies, and Very-High-Energy Neutrinos (VHENs),…

Instrumentation and Methods for Astrophysics · Physics 2024-09-12 Matteo Battisti , Johannes Eser , Angela Olinto , Giuseppe Osteria

A review of the current status of the field of Ultra-High-Energy Cosmic Ray (UHECR) including a summary of remaining open questions was presented in the white paper "Ultra-High Energy Cosmic Rays: at the Intersection of the Cosmic and…

Instrumentation and Methods for Astrophysics · Physics 2026-04-15 J. Adams , J. Alfaro , D. Allard , P. Alldredge , R. Aloisio , R. Ammendola , A. Anastasio , L. Anchordoqui , D. Badoni , J. Baláž , B. Baret , L. Bar-On , M. Battisti , R. Bellotti , M. Bertaina , M. Betts , S. Blin , M. Boezio , P. Bořil , J. Brague , I. Buckland , J. Burton Heibges , F. S. Cafagna , P. Cao , J. Caraca , R. Caruso , M. Casolino , K. Černý , N. Cordrey , A. Creusot , A. Cummings , P. Degarate , C. De Santis , A. DiGiovanni , B. J. DiLella A. DiSalvo , J. Eser , S. Ferrarese , G. Filippatos , W. Finch , J. Ford , C. Fornaro , A. Fox-Smith , A. Froid , P. Gálvez Molina , S. Garbolino , D. Garg , B. Gockel , C. Guepin , A. Haungs , T. Heibges , J. Hicks , J. Hinkel , J. Krizmanic , L. Kupari , E. H. Lenzing , F. Liberatori , S. Mackovjak , D. Mandát , M. Manfrin , A. Marcelli , L. Marcelli , G. Masciantonio , V. Masone , E. Mayotte , E. Mentzell , A. Meli , M. Mese , S. Meyer , M. Mignone , M. Miller , M. Mongelli , J. Moses , E. Msihid , R. Munini , M. Murdock , A. Novikov , S. O'Brien , A. V. Olinto , Y. Onel , G. Osteria , B. Panico , E. Parizot , G. Passeggio , T. Paul , M. Pech , K. Penalo Castillo , F. Perfetto , C. Petta , P. Picozza , L. Piotrowski , Z. Plebaniak , H. Qureshi , E. Reali , M. H. Reno , M. Ricci , E. Ricci , A. Rivetti , A. Roy , F. Sarazin , V. Scherini , P. Schovánek , F. G. Schroeder , V. Scotti , C. Shay , A. Sotgiu , R. Sparvoli , B. Stillwell , I. Strhárský , J. Szabelski , Y. Takizawa , R. Torres , R. Triggiani , C. Trimarelli , C. Tussey , J. Tutt , M. Unger , T. Venters , M. Venugopal , P. von Ballmoos , L. Wanner , D. Washington , R. Webb , A. Weindl , L. Wiencke , S. Wissel , A. Yuan

Rocket technology, originally developed for military applications, has provided a low-cost observing platform to carry critical and rapid-response scientific investigations for over 70 years. Even with the development of launch vehicles…

Instrumentation and Methods for Astrophysics · Physics 2016-02-09 Steven Christe , Ben Zeiger , Rob Pfaff , Michael Garcia

The ultraviolet (UV) window has been largely unexplored through balloons for astronomy. We discuss here the development of a compact near-UV spectrograph with fiber optics input for balloon ights. It is a modified Czerny-Turner system built…

Instrumentation and Methods for Astrophysics · Physics 2016-10-03 A. G. Sreejith , Joice Mathew , Mayuresh Sarpotdar , K. Nirmal , S. Ambily , Ajin Prakash , Margarita Safonova , Jayant Murthy
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