Physics opportunities with the Advanced Gamma Tracking Array: AGATA
Physics opportunities with the Advanced Gamma Tracking Array: AGATA
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DOI:
10.1140/epja/s10050-020-00132-w
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发表时间:
2020-05
期刊:
影响因子:
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通讯作者:
W. Korten;A. Ataç;A. Ataç;D. Beaumel;P. Bednarczyk;M. Bentley;G. Benzoni;A. Boston;A. Bracco;J. Cederkäll;B. Cederwall;M. Ciemala;E. Clément;F. Crespi;D. Curien;G. Angelis;F. Didierjean;D. Doherty;Z. Dombrádi;G. Duchêne;J. Dudek;B. Fernández-Domínguez;B. Fornal;A. Gadea;L. Gaffney;J. Gerl;K. Gladnishki;A. Goasduff;M. Gorska;P. Greenlees;H. Hess;D. Jenkins;P. John;A. Jungclaus;M. Kmiecik;A. Korichi;M. Labiche;S. Leoni;J. Ljungvall;A. Lopez-Martens;A. Maj;D. Mengoni;B. Million;A. Nannini;D. Napoli;P. Nolan;J. Nyberg;A. Obertelli;J. Pakarinen;J. Pakarinen;N. Pietralla;Z. Podolyák;B. Quintana;R. Raabe;G. Rainovski;F. Recchia;P. Reiter;D. Rudolph;J. Simpson;C. Theisen;D. Tonev;A. Tumino;J. Valiente-Dobon;O. Wieland;K. Wimmer;M. Zielińska
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文献类型:
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作者:
W. Korten;A. Ataç;A. Ataç;D. Beaumel;P. Bednarczyk;M. Bentley;G. Benzoni;A. Boston;A. Bracco;J. Cederkäll;B. Cederwall;M. Ciemala;E. Clément;F. Crespi;D. Curien;G. Angelis;F. Didierjean;D. Doherty;Z. Dombrádi;G. Duchêne;J. Dudek;B. Fernández-Domínguez;B. Fornal;A. Gadea;L. Gaffney;J. Gerl;K. Gladnishki;A. Goasduff;M. Gorska;P. Greenlees;H. Hess;D. Jenkins;P. John;A. Jungclaus;M. Kmiecik;A. Korichi;M. Labiche;S. Leoni;J. Ljungvall;A. Lopez-Martens;A. Maj;D. Mengoni;B. Million;A. Nannini;D. Napoli;P. Nolan;J. Nyberg;A. Obertelli;J. Pakarinen;J. Pakarinen;N. Pietralla;Z. Podolyák;B. Quintana;R. Raabe;G. Rainovski;F. Recchia;P. Reiter;D. Rudolph;J. Simpson;C. Theisen;D. Tonev;A. Tumino;J. Valiente-Dobon;O. Wieland;K. Wimmer;M. Zielińska
New physics opportunities are opening up by the Advanced Gamma Tracking Array, AGATA, as it evolves to the full 4instrument. AGATA is a high-resolution-ray spectrometer, solely built from highly segmented high-purity Ge detectors, capable of measuringrays from a few tens of keV to beyond 10 MeV, with unprecedented efficiency, excellent position resolution for individual-ray interactions, and very high count-rate capability. As a travelling detector AGATA will be employed at all major current and near-future European research facilities delivering stable and radioactive ion beams.