Observations of the gamma-ray emission from the Milky Way have significantly improved in recent years thanks to the current space instruments such as Fermi LAT and AGILE, and to the ground-based telescopes at higher energies such as for example H.E.S.S., VERITAS, MAGIC, and HAWC. While these high-quality data are providing crucial information on Galactic sources, interstellar emissions, and high-energy particles, they are challenging our understanding. I will discuss the state of the art, recent results, and prospects for future instruments
The development of the atmospheric Cherenkov imaging technique has led to significant advances in ga...
The last decade has marked a renaissance in the field of gamma-ray astronomy. Results from space and...
With more than one billion photons from the whole sky, accumulated in the 100MeV–100GeV band since 2...
1Observations of the gamma-ray emission from the Milky Way have significantly improved in recent yea...
Since June 2008 two gamma-ray satellite experiments, AGILE and Fermi-LAT, have been in contemporaneo...
Recent results, the present status and the perspectives of high energy gamma-ray astronomy are descr...
Recent results, the present status and the perspectives of high energy gamma-ray astronomy are descr...
Very-high-energy (VHE) gamma-ray astronomy can provide insight in to the origin of cosmic rays. The ...
A high energy (35 MeV) gamma ray telescope employing a thirty-two level magnetic core spark chamber ...
Very-high-energy (VHE) gamma-ray astronomy can provide insight in to the origin of cosmic rays. The ...
Future satellites should carry instruments having over an order of magnitude greater sensitivity tha...
36siFermi-LAT has made a significant contribution to the study of high-energy gamma-ray diffuse emis...
Actual high-energy gamma-ray and cosmic-ray space experiments are providing an outstanding view of t...
36siFermi-LAT has made a significant contribution to the study of high-energy gamma-ray diffuse emis...
Invited talk at the XXIV Physics in Collisions Conference (PIC04), Boston, USA, June 2004, 10 pages,...
The development of the atmospheric Cherenkov imaging technique has led to significant advances in ga...
The last decade has marked a renaissance in the field of gamma-ray astronomy. Results from space and...
With more than one billion photons from the whole sky, accumulated in the 100MeV–100GeV band since 2...
1Observations of the gamma-ray emission from the Milky Way have significantly improved in recent yea...
Since June 2008 two gamma-ray satellite experiments, AGILE and Fermi-LAT, have been in contemporaneo...
Recent results, the present status and the perspectives of high energy gamma-ray astronomy are descr...
Recent results, the present status and the perspectives of high energy gamma-ray astronomy are descr...
Very-high-energy (VHE) gamma-ray astronomy can provide insight in to the origin of cosmic rays. The ...
A high energy (35 MeV) gamma ray telescope employing a thirty-two level magnetic core spark chamber ...
Very-high-energy (VHE) gamma-ray astronomy can provide insight in to the origin of cosmic rays. The ...
Future satellites should carry instruments having over an order of magnitude greater sensitivity tha...
36siFermi-LAT has made a significant contribution to the study of high-energy gamma-ray diffuse emis...
Actual high-energy gamma-ray and cosmic-ray space experiments are providing an outstanding view of t...
36siFermi-LAT has made a significant contribution to the study of high-energy gamma-ray diffuse emis...
Invited talk at the XXIV Physics in Collisions Conference (PIC04), Boston, USA, June 2004, 10 pages,...
The development of the atmospheric Cherenkov imaging technique has led to significant advances in ga...
The last decade has marked a renaissance in the field of gamma-ray astronomy. Results from space and...
With more than one billion photons from the whole sky, accumulated in the 100MeV–100GeV band since 2...