The results on cosmic rays detected by the gravitational wave antenna NAUTILUS have motivated an experiment (RAP) based on a suspended cylindrical bar, which is made of the same aluminum alloy as NAUTILUS and is exposed to a high energy electron beam. Mechanical vibrations originate from the local thermal expansion caused by warming up due to the energy lost by particles crossing the material. The aim of the experiment is to measure the amplitude of the fundamental longitudinal vibration at different temperatures. We report on the results obtained down to a temperature of about 4 K for an Al 5056 bar, which agree at the level of 10% with the predictions of the model describing the underlying physical process. Very preliminary results for a ...
RAP is an experiment aimed to measure the effects caused by high-energy electrons impinging on bulk ...
The resonant-mass gravitational wave detector NAUTILUS has recently recorded signals due to cosmic r...
The cryogenic resonant gravitational wave detectors NAUTILUS and EXPLORER, made of an aluminum alloy...
The results on cosmic rays detected by the gravitational wave antenna NAUTILUS have motivated an exp...
Cosmic ray events with rate and energy much higher than expected were detected by the ultracryogenic...
The RAP experiment is based on the acoustic detection of high energy particles by cylindrical bars. ...
The results on cosmic rays detected by the gravitational antenna NAUTILUS have motivated an experime...
In order to investigate the anomalous response at ultra-low temperatures of the resonant-mass gravit...
The resonant-mass gravitational wave detector NAUTILUS has recently recorded signals due to cosmic r...
In order to investigate the anomalous response at ultra-low temperatures of the resonant-mass gravit...
The RAP experiment is based on the acoustic detection of high energy particles by cylindrical bars. ...
The results on cosmic rays detected by the gravitational antenna NAUTILUS have motivated an experime...
In order to investigate the anomalous response at ultra-low temperatures of the resonant-mass gravit...
The interaction between cosmic rays and the gravitational wave bar detector NAUTILUS is experimental...
RAP is an experiment aimed to measure the effects caused by high-energy electrons impinging on bulk ...
The resonant-mass gravitational wave detector NAUTILUS has recently recorded signals due to cosmic r...
The cryogenic resonant gravitational wave detectors NAUTILUS and EXPLORER, made of an aluminum alloy...
The results on cosmic rays detected by the gravitational wave antenna NAUTILUS have motivated an exp...
Cosmic ray events with rate and energy much higher than expected were detected by the ultracryogenic...
The RAP experiment is based on the acoustic detection of high energy particles by cylindrical bars. ...
The results on cosmic rays detected by the gravitational antenna NAUTILUS have motivated an experime...
In order to investigate the anomalous response at ultra-low temperatures of the resonant-mass gravit...
The resonant-mass gravitational wave detector NAUTILUS has recently recorded signals due to cosmic r...
In order to investigate the anomalous response at ultra-low temperatures of the resonant-mass gravit...
The RAP experiment is based on the acoustic detection of high energy particles by cylindrical bars. ...
The results on cosmic rays detected by the gravitational antenna NAUTILUS have motivated an experime...
In order to investigate the anomalous response at ultra-low temperatures of the resonant-mass gravit...
The interaction between cosmic rays and the gravitational wave bar detector NAUTILUS is experimental...
RAP is an experiment aimed to measure the effects caused by high-energy electrons impinging on bulk ...
The resonant-mass gravitational wave detector NAUTILUS has recently recorded signals due to cosmic r...
The cryogenic resonant gravitational wave detectors NAUTILUS and EXPLORER, made of an aluminum alloy...