AbstractDue to the anti-proton annihilation at Darmstadt (PANDA) experiment has rich physics studies with different event selection criteria and very high interaction rate of 2x107 /s and data rates of 200 GB/s and more, a high performance and high bandwidth data acquisition system without hardware trigger has been proposed. The data from various sub-detector systems are tagged by a very precise timestamp in front-end electronics. Event selection based on real time feature extraction, filtering and high level correlations will be executed on Advanced Telecommunications Computing Architecture (ATCA) compliant compute nodes. As a key element, the compute node that features high bandwidth connectivity and large memory for data buffering will b...
At the future Facility for Antiproton and Ion Research near Darmstadt in Germany the PANDA detector ...
The PANDA collaboration at FAIR, Germany, will employ antiproton annihilations to investigate yet un...
The PANDA experiment at the future FAIR facility at Darmstadt, Germany, will employ a novel electron...
AbstractDue to the anti-proton annihilation at Darmstadt (PANDA) experiment has rich physics studies...
A novel architecture is being proposed for the data acquisition and trigger system for PANDA experi...
The PANDA (AntiProton Annihilations at Darmstadt) experiment at FAIR facility investigates antiproto...
The PANDA collaboration at FAIR, Germany, will employ antiproton annihilations to investigate yet un...
The PANDA (AntiProton Annihilations at Darmstadt) experiment is being built at the new Facility for ...
The PANDA Experiment will be one of the future experiments at the Facility for Antiproton and ion Re...
The PANDA experiment is a new hadron physics experiment currently being built at FAIR, Darmstadt (Ge...
Large-scale physics experiments running at high interaction rates place a high demand on the data ac...
PANDA is one of the four experiments that will run at the new facility FAIR that is being built in D...
The strong interaction between quarks and gluons is one of the fundamental interactions described by...
The upcoming PANDA experiment is one of the major pillars of the future FAIR accelerator facility in...
At the future Facility for Antiproton and Ion Research near Darmstadt in Germany the PANDA detector ...
The PANDA collaboration at FAIR, Germany, will employ antiproton annihilations to investigate yet un...
The PANDA experiment at the future FAIR facility at Darmstadt, Germany, will employ a novel electron...
AbstractDue to the anti-proton annihilation at Darmstadt (PANDA) experiment has rich physics studies...
A novel architecture is being proposed for the data acquisition and trigger system for PANDA experi...
The PANDA (AntiProton Annihilations at Darmstadt) experiment at FAIR facility investigates antiproto...
The PANDA collaboration at FAIR, Germany, will employ antiproton annihilations to investigate yet un...
The PANDA (AntiProton Annihilations at Darmstadt) experiment is being built at the new Facility for ...
The PANDA Experiment will be one of the future experiments at the Facility for Antiproton and ion Re...
The PANDA experiment is a new hadron physics experiment currently being built at FAIR, Darmstadt (Ge...
Large-scale physics experiments running at high interaction rates place a high demand on the data ac...
PANDA is one of the four experiments that will run at the new facility FAIR that is being built in D...
The strong interaction between quarks and gluons is one of the fundamental interactions described by...
The upcoming PANDA experiment is one of the major pillars of the future FAIR accelerator facility in...
At the future Facility for Antiproton and Ion Research near Darmstadt in Germany the PANDA detector ...
The PANDA collaboration at FAIR, Germany, will employ antiproton annihilations to investigate yet un...
The PANDA experiment at the future FAIR facility at Darmstadt, Germany, will employ a novel electron...