Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where David T. Gregorich is active.

Publication


Featured researches published by David T. Gregorich.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 1998

Prototype test results of the solar tower atmospheric Cherenkov effect experiment (STACEE)

M. C. Chantell; Debashish Bhattacharya; C. E. Covault; M. W. Dragovan; R. Fernholz; David T. Gregorich; D. Hanna; G. H. Marion; R. A. Ong; S. Oser; T. Tumer; David A. Williams

STACEE is a proposed atmospheric Cherenkov telescope for ground-based gamma-ray astrophysics between 25 and 500 GeV. The telescope will make use of the large solar mirrors (heliostats) available at a solar research facility to achieve an energy threshold lower than any existing ground-based instrument. This paper describes the development of STACEE, including an overview of the complete instrument design and a discussion of results from recent prototype tests at the large solar heliostat field of Sandia National Laboratories.


Astroparticle Physics | 1996

Detection of atmospheric Cherenkov radiation using solar heliostat mirrors

R. A. Ong; Debashish Bhattacharya; C. E. Covault; David D. Dixon; David T. Gregorich; David S. Hanna; S. Oser; J. Québert; D.A. Smith; O.T. Tümer; A. D. Zych

Abstract There is considerable interest world-wide in developing large area atmospheric Cherenkov detectors for ground-based gamma-ray astronomy. This interest stems, in large part, from the fact that the gamma-ray energy region between 20 and 250 GeV is unexplored by any experiment. Atmospheric Cherenkov detectors offer a possible way to explore this region, but large photon collection areas are needed to achieve low energy thresholds. We are developing an experiment using the heliostat mirrors of a solar power plant as the primary collecting element. As part of this development, we built a detector using four heliostat mirrors, a secondary Fresnel lens, and a fast photon detection system. In November 1994, we used this detector to record atmospheric Cherenkov radiation produced by cosmic ray particles showering in the atmosphere. The detected rate of cosmic ray events was consistent with an energy threshold near 1 TeV. The data presented here represent the first detection of atmospheric Cherenkov radiation using solar heliostats viewed from a central tower.


Archive | 1997

The Solar Tower Atmospheric Cherenkov Effect Experiment STACEE

C. E. Covault; Debashish Bhattacharya; M. C. Chantell; Zoa Conner; Paolo S. Coppi; M. W. Dragovan; David T. Gregorich; David S. Hanna; R. Mukherjee; R. A. Ong; S. Oser; K. Ragan; O. Tumay Tumer; Claude G. Theoret; David A. Williams


Annals of Allergy Asthma & Immunology | 1997

Solar Two High Energy Gamma Ray Observatory

T. Tumer; Debashish Bhattacharya; M. C. Chantell; Zoa Conner; Paolo De Coppi; C. E. Covault; M. Dragovan; David T. Gregorich; David S. Hanna; Umar Mohideen; R. A. Ong; S. Oser; Kimberly Ragan; Heijer den Tom; Daniel Williams


Archive | 1999

Observations of the Crab Nebula and pulsar with the STACEE detector

S. Oser; Debashish Bhattacharya; L. M. Boone; Mark Charles Chantell; Zoa Conner; C. E. Covault; M. W. Dragovan; David T. Gregorich; David S. Hanna; R. Mukherjee; R. A. Ong; K. Ragan; Richard Allen Scalzo; T. Tumer; David A. Williams; J. Zweerink


Archive | 1999

Progress and Recent Results from the Solar Tower Atmospheric Cherenkov Effect Experiment (STACEE)

C. E. Covault; Mark Charles Chantell; Zoa Conner; M. W. Dragovan; S. Oser; R. A. Ong; Richard Allen Scalzo; Debashish Bhattacharya; T. Tumer; J. Zweerink; L. M. Boone; David A. Williams; David T. Gregorich; David S. Hanna; K. Ragan; Claude G. Theoret; R. Mukherjee


Archive | 1998

Current Status and Plans for the Solar Tower Atmospheric Cherenkov Effect Experiment (STACEE)

Mark Charles Chantell; Zoa Conner; C. E. Covault; M. W. Dragovan; R. A. Ong; S. Oser; David S. Hanna; K. Ragan; Claude G. Theoret; Debashish Bhattacharya; O. Tumay Tumer; Randy A. Johnson; David A. Williams; R. Mukherjee; David T. Gregorich; Paolo S. Coppi


Archive | 1998

High Energy Gamma-Ray Astronomy with STACEE

David S. Hanna; K. Ragan; Claude G. Theoret; Mark Charles Chantell; Zoa Conner; C. E. Covault; M. W. Dragovan; R. A. Ong; S. Oser; Richard Allen Scalzo; Debashish Bhattacharya; J. Zweerink; T. Tumer; L. M. Boone; David A. Williams; David T. Gregorich; R. Mukherjee


Archive | 1997

Current and Projected Capabilities of the Solar Tower Atmospheric Cherenkov Effect Experiment (STACEE) for gamma -ray Astronomy below 100 GeV

Mark Charles Chantell; C. E. Covault; M. W. Dragovan; R. A. Ong; S. Oser; Debashish Bhattacharya; O. Tumay Tumer; David T. Gregorich; David S. Hanna; David A. Williams


Archive | 1997

On-site Observations with the STACEE Cherenkov Detector Prototype

C. E. Covault; Debashish Bhattacharya; M. C. Chantell; Paolo S. Coppi; M. W. Dragovan; David T. Gregorich; David S. Hanna; R. A. Ong; K. Ragan; S. Oser; O. T. Turner; David A. Williams

Collaboration


Dive into the David T. Gregorich's collaboration.

Top Co-Authors

Avatar

C. E. Covault

Case Western Reserve University

View shared research outputs
Top Co-Authors

Avatar

R. A. Ong

University of California

View shared research outputs
Top Co-Authors

Avatar

S. Oser

University of Chicago

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

T. Tumer

University of California

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Researchain Logo
Decentralizing Knowledge