We present new measurements of heavy cosmic-ray nuclei at high energies performed during the first flight of the balloon-borne cosmic-ray experiment Cosmic-Ray Energetics and Mass (CREAM). This instrument uses multiple charge detectors and a transition radiation detector to provide the first high accuracy measurements of the relative abundances of elements from boron to oxygen up to energies around 1 TeV/n. The data agree with previous measurements at lower energies and show a relatively steep decline (∼E^−0.6 to E^−0.5) at high energies. They further show the source abundance of nitrogen relative to oxygen is ∼10% in the TeV/n region
During its second Antarctic flight, the CREAM (Cosmic Ray Energetics And Mass) balloon experiment co...
A new instrument for direct measurements of heavy cosmic ray nuclei (oxygen to iron) in the energy r...
The Cosmic Ray Energetics And Mass (CREAM) instrument flew on a high altitude balloon in Antarctica ...
We present new measurements of heavy cosmic-ray nuclei at high energies performed during the first f...
We present new measurements of heavy cosmic-ray nuclei at high energies per- formed during the first...
We present new measurements of the energy spectra of cosmic-ray (CR) nuclei from the second flight o...
The balloon-borne cosmic-ray experiment CREAM-I (Cosmic-Ray Energetics And Mass) recently completed ...
The balloon-borne experiment Cosmic Ray Energetics And Mass (CREAM) investigates very high energy (1...
We present measurements of the relative abundances of cosmic-ray nuclei in the energy range of 500-3...
The balloon-borne cosmic-ray experiment CREAM-I (Cosmic-Ray Energetics And Mass) completed a success...
The Cosmic Ray Energetics And Mass (CREAM) balloon-bome experiment circumnavigated the South Pole th...
We present new measurements of the energy spectra of cosmic-ray (CR) nuclei from the second flight o...
During its second Antarctic flight, the CREAM (Cosmic Ray Energetics And Mass) balloon experiment co...
A new instrument for direct measurements of heavy cosmic ray nuclei (oxygen to iron) in the energy r...
The Cosmic Ray Energetics And Mass (CREAM) instrument flew on a high altitude balloon in Antarctica ...
We present new measurements of heavy cosmic-ray nuclei at high energies performed during the first f...
We present new measurements of heavy cosmic-ray nuclei at high energies per- formed during the first...
We present new measurements of the energy spectra of cosmic-ray (CR) nuclei from the second flight o...
The balloon-borne cosmic-ray experiment CREAM-I (Cosmic-Ray Energetics And Mass) recently completed ...
The balloon-borne experiment Cosmic Ray Energetics And Mass (CREAM) investigates very high energy (1...
We present measurements of the relative abundances of cosmic-ray nuclei in the energy range of 500-3...
The balloon-borne cosmic-ray experiment CREAM-I (Cosmic-Ray Energetics And Mass) completed a success...
The Cosmic Ray Energetics And Mass (CREAM) balloon-bome experiment circumnavigated the South Pole th...
We present new measurements of the energy spectra of cosmic-ray (CR) nuclei from the second flight o...
During its second Antarctic flight, the CREAM (Cosmic Ray Energetics And Mass) balloon experiment co...
A new instrument for direct measurements of heavy cosmic ray nuclei (oxygen to iron) in the energy r...
The Cosmic Ray Energetics And Mass (CREAM) instrument flew on a high altitude balloon in Antarctica ...