Neutrino vertex reconstruction with in-ice radio detectors using surface reflections and implications for the neutrino energy resolution

Neutrino vertex reconstruction with in-ice radio detectors using surface reflections and implications for the neutrino energy resolution
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利用表面反射利用冰内无线电探测器重建中微子顶点以及对中微子能量分辨率的影响

DOI:
10.1088/1475-7516/2019/11/030
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发表时间:
2019
影响因子:
6.4
通讯作者:
C. Glaser)
C. Glaser)
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
ARIANNA collaboration (…;C. Glaser)

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超高能中微子 (E ν > 10 16.5 eV) 通过中微子在冰中相互作用后的无线电信号进行有效测量。放置在冰面下方 Script O (15 m) 的天线将测量绝大多数事件的两个信号(E ν = 10 18 eV 时为 90%):一个直接脉冲和来自冰面反射的第二个延迟脉冲。这样可以根据来自上方的背景对中微子进行独特的识别。此外,直接信号和反射信号之间的时间延迟 (D'n'R) 与中微子相互作用顶点的距离相关,这是确定中微子能量的关键量。在模拟研究中,我们推导了时间延迟和距离之间的关系,并研究了估算中微子能量时相应的实验不确定性。我们发现,由此产生的对能量分辨率的贡献远低于初始中微子相互作用中未知的非弹性所设定的自然极限。我们提出了一种原位测量,证明了该技术的实验可行性。使用该技术对发射和接收天线附近的局部积雪进行连续监测,可提供 Script O (1 毫米) 的表面高程精度,这比将 D'n'R 技术应用于中微子所需的精度要好得多。
Ultra high energy neutrinos (E ν> 10 16.5 eV) are efficiently measured via radio signals following a neutrino interaction in ice. An antenna placed1 Script O (15 m) below the ice surface will measure two signals for the vast majority of events (90% at E ν= 10 18 eV): a direct pulse and a second delayed pulse from a reflection off the ice surface. This allows for a unique identification of neutrinos against backgrounds arriving from above. Furthermore, the time delay between the direct and reflected signal (D'n'R) correlates with the distance to the neutrino interaction vertex, a crucial quantity to determine the neutrino energy. In a simulation study, we derive the relation between time delay and distance and study the corresponding experimental uncertainties in estimating neutrino energies. We find that the resulting contribution to the energy resolution is well below the natural limit set by the unknown inelasticity in the initial neutrino interaction. We present an in-situ measurement that proves the experimental feasibility of this technique. Continuous monitoring of the local snow accumulation in the vicinity of the transmit and receive antennas using this technique provide a precision of Script O (1 mm) in surface elevation, which is much better than that needed to apply the D'n'R technique to neutrinos.
通过 ARIANNA 实验瞄准超高能中微子
DOI: 10.1016/j.asr.2019.06.016
发表时间: 2019
影响因子: 2.6
作者:
ARIANNA collaboration (…;C. Glaser)
通讯作者: C. Glaser)
DOI: 10.1103/physrevd.99.032004
发表时间: 2018-08
期刊: Physical Review D
影响因子: 5
作者:
I. C. M. Aartsen;M. Ackermann;J. Adams;J. Aguilar;M. Ahlers;M. Ahrens;I. A. Samarai;D. Altmann;K. Andeen;T. Anderson;I. Ansseau;G. Anton;C. Arguelles;J. Auffenberg;S. Axani;P. Backes;H. Bagherpour;X. Bai;A. Barbano;J. P. Barron;S. Barwick;V. Baum;R. Bay;J. Beatty;J. Tjus;K. Becker;S. BenZvi;D. Berley;E. Bernardini;D. Besson;G. Binder;D. Bindig;E. Blaufuss;S. Blot;C. Bohm;M. Borner;F. Bos;S. Boser;O. Botner;E. Bourbeau;J. Bourbeau;F. Bradascio;J. Braun;M. Brenzke;H. Bretz;S. Bron;J. Brostean-Kaiser;A. Burgman;R. Busse;T. Carver;E. Cheung;D. Chirkin;K. Clark;L. Classen;G. Collin;J. Conrad;P. Coppin;P. Correa;D. Cowen;R. Cross;P. Dave;M. Day;J. Andr'e;C. Clercq;J. DeLaunay;H. Dembinski;K. Deoskar;S. Ridder;P. Desiati;K. D. Vries;G. Wasseige;M. With;T. DeYoung;J. C. D'iaz-V'elez;V. Lorenzo;H. Dujmovic;J. Dumm;M. Dunkman;E. Dvorak;B. Eberhardt;T. Ehrhardt;B. Eichmann;P. Eller;P. Evenson;S. Fahey;A. Fazely;J. Felde;K. Filimonov;C. Finley;A. Franckowiak;E. Friedman;A. Fritz;T. Gaisser;J. Gallagher;E. Ganster;S. Garrappa;L. Gerhardt;K. Ghorbani;W. Giang;T. Glauch;T. Glusenkamp;A. Goldschmidt;J. G. Gonzalez;D. Grant;Z. Griffith;C. Haack;A. Hallgren;L. Halve;F. Halzen;K. Hanson;D. Hebecker;D. Heereman;K. Helbing;R. Hellauer;S. Hickford;J. Hignight;G. Hill;K. Hoffman;R. Hoffmann;T. Hoinka;B. Hokanson-Fasig;K. Hoshina;F. Huang;M. Huber;K. Hultqvist;Mirco Hünnefeld;R. Hussain;S. In;N. Iovine;A. Ishihara;E. Jacobi;G. Japaridze;M. Jeong;K. Jero;B. Jones;P. Kalaczyński;W. Kang;A. Kappes;D. Kappesser;T. Karg;A. Karle;U. Katz;M. Kauer;A. Keivani;J. Kelley;A. Kheirandish;J. Kim;T. Kintscher;J. Kiryluk;T. Kittler;S. Klein;R. Koirala;H. Kolanoski;L. Kopke;C. Kopper;S. Kopper;J. Koschinsky;D. Koskinen;M. Kowalski;K. Krings;M. Kroll;G. Kruckl;S. Kunwar;N. Kurahashi;A. Kyriacou;M. Labare;J. Lanfranchi;M. Larson;F. Lauber;K. Leonard;M. Leuermann;Q. Liu;E. Lohfink;C. J. L. Mariscal;L. Lu;J. Lunemann;W. Luszczak;J. Madsen;G. Maggi;K. Mahn;Y. Makino;S. Mancina;I. Marics;R. Maruyama;K. Mase;R. Maunu;K. Meagher;M. Medici;M. Meier;T. Menne;G. Merino;T. Meures;S. Miarecki;J. Micallef;G. Moment'e;T. Montaruli;R. Moore;M. Moulai;R. Nagai;R. Nahnhauer;P. Nakarmi;U. Naumann;G. Neer;H. Niederhausen;S. Nowicki;D. Nygren;A. Pollmann;A. Olivas;A. O'Murchadha;E. O’Sullivan;T. Palczewski;H. Pandya;D. Pankova;P. Peiffer;J. Pepper;C. Heros;D. Pieloth;E. Pinat;A. Pizzuto;M. Plum;P. Price;G. Przybylski;C. Raab;M. Rameez;L. Rauch;K. Rawlins;I. C. Rea;R. Reimann;B. Relethford;G. Renzi;E. Resconi;W. Rhode;M. Richman;S. Robertson;M. Rongen;C. Rott;T. Ruhe;D. Ryckbosch;D. Rysewyk;I. Safa;S. Herrera;A. Sandrock;J. Sandroos;M. Santander;S. Sarkar;K. Satalecka;M. Schaufel;P. Schlunder;T. Schmidt;A. Schneider;J. Schneider;S. Schoneberg;L. Schumacher;S. Sclafani;D. Seckel;S. Seunarine;J. Soedingrekso;D. Soldin;M. Song;G. Spiczak;C. Spiering;J. Stachurska;M. Stamatikos;T. Stanev;Alexander Stasik;R. Stein;J. Stettner;A. Steuer;T. Stezelberger;R. Stokstad;A. Stossl;N. Strotjohann;T. Stuttard;G. Sullivan;M. Sutherland;I. Taboada;F. Tenholt;S. Ter-Antonyan;A. Terliuk;S. Tilav;P. Toale;M. Tobin;C. Tonnis;S. Toscano;D. Tosi;M. Tselengidou;C. Tung;A. Turcati;C. Turley;B. Ty;E. Unger;M. U. Elorrieta;M. Usner;J. Vandenbroucke;W. Driessche;D. Eijk;N. Eijndhoven;S. Vanheule;J. Santen;M. Vraeghe;C. Walck;A. Wallace;M. Wallraff;F. Wandler;N. Wandkowsky;T. B. Watson;A. Waza;C. Weaver;M. Weiss;C. Wendt;J. Werthebach;S. Westerhoff;B. Whelan;N. Whitehorn;K. Wiebe;C. Wiebusch;L. Wille;D. Williams;L. Wills;M. Wolf;J. Wood;T. R. Wood;E. Woolsey;K. Woschnagg;G. Wrede;D. Xu;X. Xu;Y. Xu;J. Yáñez;G. Yodh;S. Yoshida;T. Yuan
通讯作者: I. C. M. Aartsen;M. Ackermann;J. Adams;J. Aguilar;M. Ahlers;M. Ahrens;I. A. Samarai;D. Altmann;K. Andeen;T. Anderson;I. Ansseau;G. Anton;C. Arguelles;J. Auffenberg;S. Axani;P. Backes;H. Bagherpour;X. Bai;A. Barbano;J. P. Barron;S. Barwick;V. Baum;R. Bay;J. Beatty;J. Tjus;K. Becker;S. BenZvi;D. Berley;E. Bernardini;D. Besson;G. Binder;D. Bindig;E. Blaufuss;S. Blot;C. Bohm;M. Borner;F. Bos;S. Boser;O. Botner;E. Bourbeau;J. Bourbeau;F. Bradascio;J. Braun;M. Brenzke;H. Bretz;S. Bron;J. Brostean-Kaiser;A. Burgman;R. Busse;T. Carver;E. Cheung;D. Chirkin;K. Clark;L. Classen;G. Collin;J. Conrad;P. Coppin;P. Correa;D. Cowen;R. Cross;P. Dave;M. Day;J. Andr'e;C. Clercq;J. DeLaunay;H. Dembinski;K. Deoskar;S. Ridder;P. Desiati;K. D. Vries;G. Wasseige;M. With;T. DeYoung;J. C. D'iaz-V'elez;V. Lorenzo;H. Dujmovic;J. Dumm;M. Dunkman;E. Dvorak;B. Eberhardt;T. Ehrhardt;B. Eichmann;P. Eller;P. Evenson;S. Fahey;A. Fazely;J. Felde;K. Filimonov;C. Finley;A. Franckowiak;E. Friedman;A. Fritz;T. Gaisser;J. Gallagher;E. Ganster;S. Garrappa;L. Gerhardt;K. Ghorbani;W. Giang;T. Glauch;T. Glusenkamp;A. Goldschmidt;J. G. Gonzalez;D. Grant;Z. Griffith;C. Haack;A. Hallgren;L. Halve;F. Halzen;K. Hanson;D. Hebecker;D. Heereman;K. Helbing;R. Hellauer;S. Hickford;J. Hignight;G. Hill;K. Hoffman;R. Hoffmann;T. Hoinka;B. Hokanson-Fasig;K. Hoshina;F. Huang;M. Huber;K. Hultqvist;Mirco Hünnefeld;R. Hussain;S. In;N. Iovine;A. Ishihara;E. Jacobi;G. Japaridze;M. Jeong;K. Jero;B. Jones;P. Kalaczyński;W. Kang;A. Kappes;D. Kappesser;T. Karg;A. Karle;U. Katz;M. Kauer;A. Keivani;J. Kelley;A. Kheirandish;J. Kim;T. Kintscher;J. Kiryluk;T. Kittler;S. Klein;R. Koirala;H. Kolanoski;L. Kopke;C. Kopper;S. Kopper;J. Koschinsky;D. Koskinen;M. Kowalski;K. Krings;M. Kroll;G. Kruckl;S. Kunwar;N. Kurahashi;A. Kyriacou;M. Labare;J. Lanfranchi;M. Larson;F. Lauber;K. Leonard;M. Leuermann;Q. Liu;E. Lohfink;C. J. L. Mariscal;L. Lu;J. Lunemann;W. Luszczak;J. Madsen;G. Maggi;K. Mahn;Y. Makino;S. Mancina;I. Marics;R. Maruyama;K. Mase;R. Maunu;K. Meagher;M. Medici;M. Meier;T. Menne;G. Merino;T. Meures;S. Miarecki;J. Micallef;G. Moment'e;T. Montaruli;R. Moore;M. Moulai;R. Nagai;R. Nahnhauer;P. Nakarmi;U. Naumann;G. Neer;H. Niederhausen;S. Nowicki;D. Nygren;A. Pollmann;A. Olivas;A. O'Murchadha;E. O’Sullivan;T. Palczewski;H. Pandya;D. Pankova;P. Peiffer;J. Pepper;C. Heros;D. Pieloth;E. Pinat;A. Pizzuto;M. Plum;P. Price;G. Przybylski;C. Raab;M. Rameez;L. Rauch;K. Rawlins;I. C. Rea;R. Reimann;B. Relethford;G. Renzi;E. Resconi;W. Rhode;M. Richman;S. Robertson;M. Rongen;C. Rott;T. Ruhe;D. Ryckbosch;D. Rysewyk;I. Safa;S. Herrera;A. Sandrock;J. Sandroos;M. Santander;S. Sarkar;K. Satalecka;M. Schaufel;P. Schlunder;T. Schmidt;A. Schneider;J. Schneider;S. Schoneberg;L. Schumacher;S. Sclafani;D. Seckel;S. Seunarine;J. Soedingrekso;D. Soldin;M. Song;G. Spiczak;C. Spiering;J. Stachurska;M. Stamatikos;T. Stanev;Alexander Stasik;R. Stein;J. Stettner;A. Steuer;T. Stezelberger;R. Stokstad;A. Stossl;N. Strotjohann;T. Stuttard;G. Sullivan;M. Sutherland;I. Taboada;F. Tenholt;S. Ter-Antonyan;A. Terliuk;S. Tilav;P. Toale;M. Tobin;C. Tonnis;S. Toscano;D. Tosi;M. Tselengidou;C. Tung;A. Turcati;C. Turley;B. Ty;E. Unger;M. U. Elorrieta;M. Usner;J. Vandenbroucke;W. Driessche;D. Eijk;N. Eijndhoven;S. Vanheule;J. Santen;M. Vraeghe;C. Walck;A. Wallace;M. Wallraff;F. Wandler;N. Wandkowsky;T. B. Watson;A. Waza;C. Weaver;M. Weiss;C. Wendt;J. Werthebach;S. Westerhoff;B. Whelan;N. Whitehorn;K. Wiebe;C. Wiebusch;L. Wille;D. Williams;L. Wills;M. Wolf;J. Wood;T. R. Wood;E. Woolsey;K. Woschnagg;G. Wrede;D. Xu;X. Xu;Y. Xu;J. Yáñez;G. Yodh;S. Yoshida;T. Yuan
DOI: 10.1140/epjc/s10052-020-7612-8
发表时间: 2019-06
期刊: The European Physical Journal C
影响因子: --
作者:
C. Glaser;Daniel Garc'ia-Fern'andez;A. Nelles;J. Alvarez-Muñiz;S. Barwick;D. Besson;B. Clark;A. Connolly;C. Deaconu;Krijn de Vries;J. Hanson;B. Hokanson-Fasig;R. Lahmann;U. Latif;S. Kleinfelder;C. Persichilli;Yue Pan;Carl Pfender;I. Plaisier;D. Seckel;J. Torres;S. Toscano;N. Eijndhoven;A. Vieregg;C. Welling;T. Winchen;S. Wissel
通讯作者: C. Glaser;Daniel Garc'ia-Fern'andez;A. Nelles;J. Alvarez-Muñiz;S. Barwick;D. Besson;B. Clark;A. Connolly;C. Deaconu;Krijn de Vries;J. Hanson;B. Hokanson-Fasig;R. Lahmann;U. Latif;S. Kleinfelder;C. Persichilli;Yue Pan;Carl Pfender;I. Plaisier;D. Seckel;J. Torres;S. Toscano;N. Eijndhoven;A. Vieregg;C. Welling;T. Winchen;S. Wissel
NuRadioReco:射电中微子探测器的重建框架
DOI: 10.1140/epjc/s10052-019-6971-5
发表时间: 2019
期刊: The European Physical Journal C
影响因子: --
作者:
C. Glaser
通讯作者: C. Glaser
用于无线电应用的致密介质中极高能簇射的稀疏模拟
DOI: 10.1016/j.astropartphys.2009.06.005
发表时间: 2009
影响因子: 3.5
作者:
J. Alvarez;C. James;R. Protheroe;E. Zas
通讯作者: E. Zas