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Dive into the research topics where A. Christov is active.

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Featured researches published by A. Christov.


IEEE Transactions on Nuclear Science | 2014

Characterization of New Hexagonal Large Area MPPCs

V. Boccone; Alessandro Basili; J. A. Aguilar; A. Christov; D. della Volpe; T. Montaruli; M. Rameez

Photomultipliers (PMTs) are the standard detector for construction of the current generation of imaging Atmospheric Cherenkov Telescopes (IACTs). Despite impressive improvements in Quantum Efficiency (QE) and reliability in the last years, these devices suffer from the limitation of being unable to operate in the partially illuminated sky (during full or partial moon periods) as the excess light leads to a significant increase in the rate of ageing of the devices themselves and consequently limit the camera life. Large area Multi-Pixel Photon Counters (MPPCs) - also known as Geiger-mode avalanche photodiodes (G-APDs) or Silicon Photomultipliers (SiPMs) - are a viable alternative and are commercially available from different producers in various types and dimensions. The maturity of this technology for application to Cherenkov Astronomy has already been demonstrated by the FACT telescope. The Small Size Telescopes (SSTs) of Cherenkov Telescope Array (CTA) observatory foresee the usage of MPPCs. One of the designs for a 4 m-diameter dish Davies-Cotton telescope engages custom designed large-area hexagonal MPPCs. This is the first time that an hexagonal device with area of 95 mm2 divided in 4 channels is made available. These photosensors, coupled with open non imaging light concentrators with a 24 degrees cut-off angle, offer a performing alternative to standard PMTs. In this paper we show the results of their characterization together with the comparison with other commercially available devices such as the Hamamatsu S10985-050C (2×2 array of 3 mm ×3 mm MPPCs) and the SensLμSB30035-X13-E15.


Proceedings of SPIE | 2016

The single mirror small size telescope (SST-1M) of the Cherenkov Telescope Array

J. A. Aguilar; W. Bilnik; J. Borkowski; F. Cadoux; A. Christov; D. della Volpe; Y. Favre; Mathieu Heller; J. Kasperek; E. Lyard; A. Marszałek; R. Moderski; T. Montaruli; A. Porcelli; E. Prandini; P. Rajda; M. Rameez; E.jr Schioppa; I. Troyano Pujadas; K. Zietara; J. Błocki; L. Bogacz; T. Bulik; A. Frankowski; M. Grudzińska; B. Idźkowski; M. Jamrozy; M. Janiak; K. Lalik; E. Mach

The Small Size Telescope with Single Mirror (SST-1M) is one of the proposed types of Small Size Telescopes (SST) for the Cherenkov Telescope Array (CTA). The CTA south array will be composed of about 100 telescopes, out of which about 70 are of SST class, which are optimized for the detection of gamma rays in the energy range from 5 TeV to 300 TeV. The SST-1M implements a Davies-Cotton optics with a 4 m dish diameter with a field of view of 9°. The Cherenkov light produced in atmospheric showers is focused onto a 88 cm wide hexagonal photo-detection plane, composed of 1296 custom designed large area hexagonal silicon photomultipliers (SiPM) and a fully digital readout and trigger system. The SST-1M camera has been designed to provide high performance in a robust as well as compact and lightweight design. In this contribution, we review the different steps that led to the realization of the telescope prototype and its innovative camera.


arXiv: Instrumentation and Methods for Astrophysics | 2017

The single mirror small sized telescope for the Cherenkov telescope array

Mathieu Heller; E.jr Schioppa; A. Porcelli; I. Troyano Pujadas; K. Ziȩtara; D. della Volpe; T. Montaruli; F. Cadoux; Y. Favre; J. A. Aguilar; A. Christov; E. Prandini; P. Rajda; M. Rameez; W. Bilnik; J. Błocki; L. Bogacz; J. Borkowski; T. Bulik; A. Frankowski; M. Grudzińska; B. Idźkowski; M. Jamrozy; M. Janiak; J. Kasperek; K. Lalik; E. Lyard; E. Mach; D. Mandat; A. Marszałek

The Small Size Telescope with Single Mirror (SST-1M) is one of the proposed types of Small Size Telescopes (SST) for the Cherenkov Telescope Array (CTA). About 70 SST telescopes will be part the CTA southern array which will also include Medium Sized Telescopes (MST) in its threshold configuration. Optimized for the detection of gamma rays in the energy range from 5 TeV to 300 TeV, the SST-1M uses a Davies-Cotton optics with a 4 m dish diameter with a field of view of 9 degrees. The Cherenkov light resulting from the interaction of the gamma-rays in the atmosphere is focused onto a 88 cm side-to-side hexagonal photo-detection plane. The latter is composed of 1296 hollow light guides coupled to large area hexagonal silicon photomultipliers (SiPM). The SiPM readout is fully digital readout as for the trigger system. The compact and lightweight design of the SST-1M camera offers very high performance ideal for gamma-ray observation requirement. In this contribution, the concept, design, performance and status of the first telescope prototype are presented.


Proceedings of The 34th International Cosmic Ray Conference — PoS(ICRC2015) | 2016

Correlation between the UHECRs measured by the Pierre Auger Observatory and Telescope Array and neutrino candidate events fro

A. Christov; Geraldina Golup; J. Aublin; L. Caccianiga; P.L. Ghia; T. Montaruli; M. Rameez; E. Roulet; H. Sagawa; P. Tinyakov; M. Unger

We have conducted three searches for correlations between ultra-high energy cosmic rays detected by the Telescope Array and the Pierre Auger Observatory, and high-energy neutrino candidate events from IceCube. Two cross-correlation analyses with UHECRs are done: one with 39 cascades from the IceCube ‘high-energy starting events’ sample and the other with 16 high-energy ‘track events’. The angular separation between the arrival directions of neutrinos and UHECRs is scanned over. The same events are also used in a separate search using a maximum likelihood approach, after the neutrino arrival directions are stacked. To estimate the significance we assume UHECR magnetic deflections to be inversely proportional to their energy, with values 3◦ , 6◦ and 9 ◦ at 100 EeV to allow for the uncertainties on the magnetic field strength and UHECR charge. A similar analysis is performed on stacked UHECR arrival directions and the IceCube sample of through-going muon track events which were optimized for neutrino point-source searches.


Proceedings of SPIE | 2016

Front-end and slow control electronics for large area SiPMs used for the single mirror Small Size Telescope (SST-1M) of the Cherenkov Telescope Array (CTA)

J. A. Aguilar; W. Bilnik; J. Borkowski; F. Cadoux; A. Christov; D. della Volpe; Y. Favre; Mathieu Heller; J. Kasperek; E. Lyard; A. Marszałek; R. Moderski; T. Montaruli; A. Porcelli; E. Prandini; P. Rajda; M. Rameez; E.jr Schioppa; I. Troyano Pujadas; K. Zietara; J. Błocki; L. Bogacz; T. Bulik; M. Curyło; M. Dyrda; A. Frankowski; Ł. Grudniki; M. Grudzińska; B. Idźkowski; M. Jamrozy

The single mirror Small Size Telescope (SST-1M) project proposes a design among others for the smallest type of telescopes (SST), that will compose the south observatory of the Cherenkov Telescope Array (CTA). The SST camera collecting the Cherenkov light resulting from very high energy gamma-ray interactions in the atmosphere proposes to use Silicon PhotoMultipliers (SiPM). The SST-1M design has led to the use of unique pixel shape and size that required a dedicated development by the University of Geneva and Hamamatsu. An active surface of ~94 mm2 and a resulting total capacitance of ~3.4 nF combined with the stringent requirements of the CTA project on timing and charge resolution have led the University of Geneva to develop a custom preamplifier stage and slow-control system. The design and performance of the tailor made preamplifier stage and of the slow control electronics will be briefly described. The bias circuit of the sensor contains a resistor meant to prevent the sensor from drawing high current. However this resistor also introduces a voltage drop at the sensor input impacting the stability of its operation. A model has been developed in order to derive the parameters needed to account for it at the data analysis level. A solution based on the SST-1M front-end and digital readout is proposed to compensate for the voltage drop at the sensor cathode.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2016

The front-end electronics and slow control of large area SiPM for the SST-1M camera developed for the CTA experiment

J. A. Aguilar; W. Bilnik; J. Borkowski; F. Cadoux; A. Christov; D. della Volpe; Y. Favre; Mathieu Heller; J. Kasperek; E. Lyard; A. Marszałek; R. Moderski; T. Montaruli; A. Porcelli; E. Prandini; P. Rajda; M. Rameez; E. Schioppa; I. Troyano Pujadas; K. Ziȩtara; J. Błocki; L. Bogacz; T. Bulik; M. Curyło; M. Dyrda; A. Frankowski; Ł. Grudniki; M. Grudzińska; B. Idźkowski; M. Jamrozy


arXiv: Instrumentation and Methods for Astrophysics | 2015

The SST-1M camera for the Cherenkov Telescope Array

E. Schioppa; F. Cadoux; A. Christov; D. della Volpe; Y. Favre; Mathieu Heller; T. Montaruli; A. Porcelli; M. Rameez; I. Troyano Pujadas; W. Bilnik; J. Błocki; L. Bogacz; T. Bulik; M. Curyło; M. Dyrda; A. Frankowski; L. Grudniki; M. Grudzińska; B. Idzkowski; M. Jamrozy; M. Janiak; J. Kasperek; K. Lalik; E. Lyard; E. Mach; D. Mandat; A. Marszałek; J. Michaowski; R. Moderski


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2017

Characterization and commissioning of the SST-1M camera for the Cherenkov Telescope Array

J. A. Aguilar; W. Bilnik; J. Błocki; L. Bogacz; J. Borkowski; T. Bulik; F. Cadoux; A. Christov; M. Curyło; D. della Volpe; M. Dyrda; Y. Favre; A. Frankowski; Ł. Grudnik; M. Grudzińska; Mathieu Heller; B. Idźkowski; M. Jamrozy; M. Janiak; J. Kasperek; K. Lalik; E. Lyard; E. Mach; D. Mandat; A. Marszałek; L. D. Medina Miranda; J. Michałowski; R. Moderski; T. Montaruli; A. Neronov


Journal of Physics: Conference Series | 2016

Correlation between UHECRs measured by the Pierre Auger Observatory and Telescope Array and neutrino candidate events from IceCube

A. Christov; H. Sagawa; E. Roulet; J. Aublin; P. Tinyakov; M. Rameez; M. Unger; T. Montaruli; L. Caccianiga; P.L. Ghia; Geraldina Golup


Proceedings of Science | 2015

Correlation between the UHECRs measured by the Pierre Auger Observatory and Telescope Array and neutrino candidate events from IceCube

A. Christov; Geraldina Golup; J. Aublin; L. Caccianiga; P.L. Ghia; T. Montaruli; M. Rameez; E. Roulet; H. Sagawa; P. Tinyakov; M. Unger

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J. A. Aguilar

Université libre de Bruxelles

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A. Frankowski

Polish Academy of Sciences

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J. Błocki

Jagiellonian University

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J. Kasperek

AGH University of Science and Technology

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L. Bogacz

Jagiellonian University

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