课题基金 / 基金详情

General Relativistic Astrophysics

General Relativistic Astrophysics
广义相对论天体物理学
批准号:
ST/M000931/1
负责人:
Nils Andersson
金额:
$47.72万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2015
资助国家:
英国
项目状态:
已结题
起止时间:
2015 至 --

项目摘要

项目成果

Nils Andersson的其他基金

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相关文献

中文摘要
翻译
我们正在进入一个高精度天文学时代,无论是电磁天文学还是引力天文学。第一代高灵敏度引力波探测器已经达到设计灵敏度,并正在使用先进技术进行升级。LOFAR是在线的,大大提高了无线电定时精度。未来与射电SKA、爱因斯坦望远镜和空间引力波探测器EL ISA相关的进展将补充目前高质量的X射线观测,并将使我们能够显著提高我们对宇宙的理解。为了最大限度地从这些改进中受益,我们需要改进目前涉及致密物体的一系列现象的模型。需要更高质量的理论来探测各种信号,并尽可能多地探测相关物理。这项研究计划建立在南安普顿引力小组在黑洞、中子星和引力波天体物理学方面的专业知识基础上,旨在加深对黑洞和中子星的动力学、相关观测特征以及如何利用这些信号提供有关物理信息的理解。该方案具有高度相互关联的性质,有四个不同的主题,需要类似的方法(例如一般相对论微扰理论或数值模拟)和物理输入(例如超流、磁场或引力辐射反应)。总体目标是开发显著改进的模型,可以在一系列通道中针对未来的高精度观测进行测试。中子星是独特的天体物理实验室,其建模需要鲜为人知的物理学。为了研究它们的性质,人们必须将超核物理与磁流体力学结合起来,描述超流体和超导体,潜在的奇异物质相,如去受限的夸克-胶子等离子体,当然还有广义相对论。更好地理解中子星动力学是这项提议的主要目标之一。我们将实施三个项目,重点是中子星的动力学和演化。这项拟议的工作与引力波物理学直接相关,导致了天体物理驱动的信号搜索,并为与电磁观测相关的问题提供了有用的见解。我们的目标是建立准确的中子星动力学模型,该模型可以与最近观测到的与磁星巨型耀斑相关的振荡进行测试,并将为未来对快速自转中子星中的r型振荡的定向搜索提供信息。我们将提供射电脉冲星中神秘的毛刺和其他计时现象的改进模型。我们还计划以前所未有的真实感对中子星合并进行非线性模拟,探索与新出现的引力波的电磁对应。螺旋双星本质上是宇宙中最强的引力波来源。来自这类事件的引力波形是对黑洞附近强引力的极其有效的探测,它们的探测有望在最极端的领域对引力理论进行准确测试。为了实现这一前景,我们需要从理论上很好地理解相对论辐射反应效应。最近在引力自力问题上取得的进展为这一领域的工作提供了巨大动力。在此基础上,我们将探索自力计算、数值相对论和后牛顿理论之间有希望的协同作用,以便提供一个在整个质量比和自旋率范围内的二元激发的通用模型。
英文摘要
We are entering an era of high-precision astronomy, both electromagnetic and gravitational. The first generation of highly sensitive gravitational-wave detectors have reached design sensitivity and are being upgraded using advanced technology. LOFAR is on-line, providing significant improvements in radio timing precision. Future advances associated with the SKA in radio, the Einstein Telescope and the space based detector eLISA for gravitational waves will complement current quality X-ray observations, and will allow us to improve our understanding of the Universe significantly. To benefit maximally from these improvements, we need to improve our current models of a range of phenomena involving compact objects. Better quality theory is needed both to detect the various signals and to probe as much of the relevant physics as possible.This research proposal builds on the Southampton Gravity Group's expertise in black hole, neutron star and gravitational-wave astrophysics, and is aimed at developing a deeper understanding of the dynamics of black holes and neutron stars, the associated observational signatures and how these signals can be used to provide information about the involved physics. The programme is of a highly interconnected nature with four different themes requiring similar methodology (e.g. general relativistic perturbation theory or numerical simulations) and physics input (e.g. superfluidity, magnetic fields or gravitational radiation reaction). The overall aim is to develop significantly improved models that can be tested against future high-precision observations in a range of channels.Neutron stars are unique astrophysical laboratories, the modelling of which requires much poorly known physics. In order to investigate their properties, one must combine supranuclear physics with magnetohydrodynamics, a description of superfluids and superconductors, potentially exotic phases of matter like a deconfined quark-gluon plasma and, of course, general relativity. Achieving a better understanding of neutron star dynamics is one of the key aims of this proposal. We will carry out three projects, focused on the dynamics and evolution of neutron stars. The proposed work is of immediate relevance for gravitational-wave physics, leading to astrophysically motivated signal searches, and provides useful insights into problems relevant for electromagnetic observations. We aim to construct accurate models of neutron star dynamics that can be tested against recent observations of oscillations associated with magnetar giant flares, and which will inform future targeted searches for r-mode oscillations in fast spinning neutron stars. We will provide improved models of the enigmatic glitches and other timing phenomena seen in radio pulsars. We also plan to carry out nonlinear simulations of neutron star mergers with an unprecedented level of realism, exploring electromagnetic counterparts to the emerging gravitational waves.Inspiralling binaries are intrinsically the strongest sources of gravitational waves in the Universe. Gravitational waveforms from such events are extremely efficient probes of the strong gravity near black holes, and their detection promises to allow accurate tests of gravitational theory in its most extreme domain. In order to realise this promise we need a good theoretical understanding of relativistic radiation-reaction effects. Recent progress on the problem of the gravitational self-force provides significant momentum for work in this area. Building on this, we will explore the promising synergy between self-force calculations, numerical relativity and post-Newtonian theory, in order to inform a universal model of binary inspirals across the entire range of mass ratios and spin rates.
期刊论文(10)
专著(0)
科研奖励(0)
会议论文
Erratum: "First Search for Gravitational Waves from Known Pulsars with Advanced LIGO" (2017, ApJ, 839, 12)
勘误表:“首次利用先进的 LIGO 搜索已知脉冲星的引力波”(2017, ApJ, 839, 12)
DOI: 10.3847/1538-4357/aa9aee
发表时间: 2017
期刊: The Astrophysical Journal
影响因子: --
作者: [Abbott B]
通讯作者: Abbott B
DOI: 10.1088/0004-637x/813/1/39
发表时间: 2014-12
期刊: arXiv: High Energy Astrophysical Phenomena
影响因子: --
作者: [J. Aasi;B. Abbott;R. Abbott;T. Abbott;M. Abernathy;F. Acernese;K. Ackley;C. Adams;T. Adams;P. Addesso;R. Adhikari;V. Adya;C. Affeldt;M. Agathos;K. Agatsuma;N. Aggarwal;O. Aguiar;A. Ain;P. Ajith;A. Alemic;B. Allen;A. Allocca;D. Amariutei;S. Anderson;W. Anderson;K. Arai;M. Araya;C. Arceneaux;J. Areeda;S. Ast;S. Aston;P. Astone;P. Aufmuth;C. Aulbert;B. Aylott;S. Babak;P. Baker;F. Baldaccini;G. Ballardin;S. Ballmer;J. Barayoga;M. Barbet;S. Barclay;B. Barish;D. Barker;F. Barone;B. Barr;L. Barsotti;M. Barsuglia;J. Bartlett;M. Barton;I. Bartos;R. Bassiri;A. Basti;J. Batch;T. Bauer;C. Baune;V. Bavigadda;B. Behnke;M. Bejger;C. Belczynski;A. Bell;C. Bell;M. Benacquista;J. Bergman;G. Bergmann;C. Berry;D. Bersanetti;A. Bertolini;J. Betzwieser;S. Bhagwat;R. Bhandare;I. Bilenko;G. Billingsley;J. Birch;S. Biscans;M. Bitossi;C. Biwer;M. Bizouard;J. Blackburn;L. Blackburn;C. Blair;D. Blair;S. Bloemen;O. Bock;T. Bodiya;M. Boer;G. Bogaert;P. Bojtos;C. Bond;F. Bondu;L. Bonelli;R. Bonnand;R. Bork;M. Born;V. Boschi;S. Bose;C. Bradaschia;P. Brady;V. Braginsky;M. Branchesi;J. Brau;T. Briant;D. Bridges;A. Brillet;M. Brinkmann;V. Brisson;A. Brooks;D. Brown;D. Brown;N. Brown;S. Buchman;A. Buikema;T. Bulik;H. Bulten;A. Buonanno;D. Buskulic;C. Buy;L. Cadonati;G. Cagnoli;J. C. Bustillo;E. Calloni;J. Camp;K. Cannon;J. Cao;C. Capano;F. Carbognani;S. Caride;S. Caudill;M. Cavaglià;F. Cavalier;R. Cavalieri;G. Cella;C. Cepeda;E. Cesarini;R. Chakraborty;T. Chalermsongsak;S. Chamberlin;S. Chao;P. Charlton;É. Chassande-Mottin;Y. Chen;A. Chincarini;A. Chiummo;H. Cho;M. Cho;J. Chow;N. Christensen;Q. Chu;S. Chua;S. Chung;G. Ciani;F. Clara;J. Clark;F. Cleva;E. Coccia;P. Cohadon;A. Colla;C. Collette;M. Colombini;L. Cominsky;M. Constancio;A. Conte;D. Cook;T. Corbitt;N. Cornish;A. Corsi;C. Costa;M. Coughlin;J. Coulon;S. Countryman;P. Couvares;D. Coward;M. Cowart;D. Coyne;R. Coyne;K. Craig;J. Creighton;T. Creighton;J. Cripe;S. Crowder;A. Cumming;L. Cunningham;E. Cuoco;C. Cutler;K. Dahl;T. D. Canton;M. Damjanic;S. Danilishin;S. D’Antonio;K. Danzmann;L. Dartez;V. Dattilo;I. Dave;H. Daveloza;M. Davier;G. Davies;E. Daw;R. Day;D. DeBra;G. Debreczeni;J. Degallaix;M. D. Laurentis;S. Deléglise;W. D. Pozzo;T. Denker;T. Dent;H. Dereli;V. Dergachev;R. Rosa;R. Derosa;R. DeSalvo;S. Dhurandhar;M. Díaz;L. Fiore;A. Lieto;I. Palma;A. Virgilio;G. Dojcinoski;V. Dolique;E. Dominguez;F. Donovan;K. Dooley;S. Doravari;R. Douglas;T. Downes;M. Drago;J. Driggers;Z. Du;M. Ducrot;S. Dwyer;T. Eberle;T. Edo;M. Edwards;A. Effler;H. Eggenstein;P. Ehrens;J. Eichholz;S. Eikenberry;R. Essick;T. Etzel;M. Evans;T. Evans;M. Factourovich;V. Fafone;S. Fairhurst;X. Fan;Q. Fang;S. Farinon;B. Farr;W. Farr;Marc Favata;M. Fays;H. Fehrmann;M. Fejer;D. Feldbaum;I. Ferrante;E. Ferreira;F. Ferrini;F. Fidecaro;I. Fiori;R. Fisher;R. Flaminio;J. Fournier;S. Franco;S. Frasca;F. Frasconi;Z. Frei;A. Freise;R. Frey;T. Fricke;P. Fritschel;V. Frolov;S. Fuentes-Tapia;P. Fulda;M. Fyffe;J. Gair;L. Gammaitoni;S. Gaonkar;F. Garufi;A. Gatto;N. Gehrels;G. Gemme;B. Gendre;E. Génin;A. Gennai;L. Gergely;S. Ghosh;J. Giaime;K. Giardina;A. Giazotto;J. Gleason;E. Goetz;R. Goetz;L. Gondán;G. González;N. Gordon;M. Gorodetsky;S. Gossan;S. Gossler;R. Gouaty;C. Gräf;P. Graff;M. Granata;A. Grant;S. Gras;C. Gray;R. Greenhalgh;A. Gretarsson;P. Groot;H. Grote;S. Grunewald;G. Guidi;C. Guido;X. Guo;K. Gushwa;E. Gustafson;R. Gustafson;J. Hacker;E. Hall;G. Hammond;M. Hanke;J. Hanks;C. Hanna;M. Hannam;J. Hanson;T. Hardwick;J. Harms;G. Harry;I. Harry;M. Hart;M. Hartman;C. Haster;K. Haughian;S. Hee;A. Heidmann;M. Heintze;G. Heinzel;H. Heitmann;P. Hello;G. Hemming;M. Hendry;I. Heng;A. Heptonstall;M. Heurs;M. Hewitson;S. Hild;D. Hoak;K. Hodge;D. Hofman;S. Hollitt;K. Holt;P. Hopkins;D. Hosken;J. Hough;E. Houston;E. Howell;Y. Hu;E. Huerta;B. Hughey;S. Husa;S. Huttner;M. Huynh;T. Huynh--Dinh-T.-Huynh--Dinh-1381195806;A. Idrisy;N. Indik;D. Ingram;R. Inta;G. Islas;J. Isler;T. Isogai;B. Iyer;K. Izumi;M. Jacobson;H. Jang;P. Jaranowski;S. Jawahar;Y. Ji;F. Jiménez-Forteza;W. Johnson;D. Jones;R. Jones;R. Jonker;L. Ju;V. Kalogera;S. Kandhasamy;G. Kang;J. Kanner;M. Kasprzack;E. Katsavounidis;W. Katzman;H. Kaufer;S. Kaufer;T. Kaur;K. Kawabe;F. Kawazoe;F. Kéfélian;G. M. Keiser;D. Keitel;D. Kelley;W. Kells;D. Keppel;A. Khalaidovski;F. Khalili;E. Khazanov;C. Kim;K. Kim;N. Kim;N. Kim;Y. Kim;E. King;P. King;D. Kinzel;J. Kissel;S. Klimenko;J. Kline;S. Koehlenbeck;K. Kokeyama;V. Kondrashov;M. Korobko;W. Korth;I. Kowalska;D. Kozak;V. Kringel;B. Krishnan;A. Królak;C. Krueger;G. Kuehn;A. Kumar;P. Kumar;L. Kuo;A. Kutynia;M. Landry;B. Lantz;S. Larson;P. Lasky;A. Lazzarini;C. Lazzaro;J. Le;P. Leaci;S. Leavey;E. Lebigot;E. Lebigot;C. Lee;H. Lee;H. Lee;M. Leonardi;J. Leong;N. Leroy;N. Letendre;Y. Levin;B. Levine;J. Lewis;T. G. F. Li;K. Libbrecht;A. Libson;A. Lin;T. Littenberg;N. Lockerbie;V. Lockett;J. Logue;A. Lombardi;M. Lorenzini;V. Loriette;M. Lormand;G. Losurdo]
通讯作者: J. Aasi;B. Abbott;R. Abbott;T. Abbott;M. Abernathy;F. Acernese;K. Ackley;C. Adams;T. Adams;P. Addesso;R. Adhikari;V. Adya;C. Affeldt;M. Agathos;K. Agatsuma;N. Aggarwal;O. Aguiar;A. Ain;P. Ajith;A. Alemic;B. Allen;A. Allocca;D. Amariutei;S. Anderson;W. Anderson;K. Arai;M. Araya;C. Arceneaux;J. Areeda;S. Ast;S. Aston;P. Astone;P. Aufmuth;C. Aulbert;B. Aylott;S. Babak;P. Baker;F. Baldaccini;G. Ballardin;S. Ballmer;J. Barayoga;M. Barbet;S. Barclay;B. Barish;D. Barker;F. Barone;B. Barr;L. Barsotti;M. Barsuglia;J. Bartlett;M. Barton;I. Bartos;R. Bassiri;A. Basti;J. Batch;T. Bauer;C. Baune;V. Bavigadda;B. Behnke;M. Bejger;C. Belczynski;A. Bell;C. Bell;M. Benacquista;J. Bergman;G. Bergmann;C. Berry;D. Bersanetti;A. Bertolini;J. Betzwieser;S. Bhagwat;R. Bhandare;I. Bilenko;G. Billingsley;J. Birch;S. Biscans;M. Bitossi;C. Biwer;M. Bizouard;J. Blackburn;L. Blackburn;C. Blair;D. Blair;S. Bloemen;O. Bock;T. Bodiya;M. Boer;G. Bogaert;P. Bojtos;C. Bond;F. Bondu;L. Bonelli;R. Bonnand;R. Bork;M. Born;V. Boschi;S. Bose;C. Bradaschia;P. Brady;V. Braginsky;M. Branchesi;J. Brau;T. Briant;D. Bridges;A. Brillet;M. Brinkmann;V. Brisson;A. Brooks;D. Brown;D. Brown;N. Brown;S. Buchman;A. Buikema;T. Bulik;H. Bulten;A. Buonanno;D. Buskulic;C. Buy;L. Cadonati;G. Cagnoli;J. C. Bustillo;E. Calloni;J. Camp;K. Cannon;J. Cao;C. Capano;F. Carbognani;S. Caride;S. Caudill;M. Cavaglià;F. Cavalier;R. Cavalieri;G. Cella;C. Cepeda;E. Cesarini;R. Chakraborty;T. Chalermsongsak;S. Chamberlin;S. Chao;P. Charlton;É. Chassande-Mottin;Y. Chen;A. Chincarini;A. Chiummo;H. Cho;M. Cho;J. Chow;N. Christensen;Q. Chu;S. Chua;S. Chung;G. Ciani;F. Clara;J. Clark;F. Cleva;E. Coccia;P. Cohadon;A. Colla;C. Collette;M. Colombini;L. Cominsky;M. Constancio;A. Conte;D. Cook;T. Corbitt;N. Cornish;A. Corsi;C. Costa;M. Coughlin;J. Coulon;S. Countryman;P. Couvares;D. Coward;M. Cowart;D. Coyne;R. Coyne;K. Craig;J. Creighton;T. Creighton;J. Cripe;S. Crowder;A. Cumming;L. Cunningham;E. Cuoco;C. Cutler;K. Dahl;T. D. Canton;M. Damjanic;S. Danilishin;S. D’Antonio;K. Danzmann;L. Dartez;V. Dattilo;I. Dave;H. Daveloza;M. Davier;G. Davies;E. Daw;R. Day;D. DeBra;G. Debreczeni;J. Degallaix;M. D. Laurentis;S. Deléglise;W. D. Pozzo;T. Denker;T. Dent;H. Dereli;V. Dergachev;R. Rosa;R. Derosa;R. DeSalvo;S. Dhurandhar;M. Díaz;L. Fiore;A. Lieto;I. Palma;A. Virgilio;G. Dojcinoski;V. Dolique;E. Dominguez;F. Donovan;K. Dooley;S. Doravari;R. Douglas;T. Downes;M. Drago;J. Driggers;Z. Du;M. Ducrot;S. Dwyer;T. Eberle;T. Edo;M. Edwards;A. Effler;H. Eggenstein;P. Ehrens;J. Eichholz;S. Eikenberry;R. Essick;T. Etzel;M. Evans;T. Evans;M. Factourovich;V. Fafone;S. Fairhurst;X. Fan;Q. Fang;S. Farinon;B. Farr;W. Farr;Marc Favata;M. Fays;H. Fehrmann;M. Fejer;D. Feldbaum;I. Ferrante;E. Ferreira;F. Ferrini;F. Fidecaro;I. Fiori;R. Fisher;R. Flaminio;J. Fournier;S. Franco;S. Frasca;F. Frasconi;Z. Frei;A. Freise;R. Frey;T. Fricke;P. Fritschel;V. Frolov;S. Fuentes-Tapia;P. Fulda;M. Fyffe;J. Gair;L. Gammaitoni;S. Gaonkar;F. Garufi;A. Gatto;N. Gehrels;G. Gemme;B. Gendre;E. Génin;A. Gennai;L. Gergely;S. Ghosh;J. Giaime;K. Giardina;A. Giazotto;J. Gleason;E. Goetz;R. Goetz;L. Gondán;G. González;N. Gordon;M. Gorodetsky;S. Gossan;S. Gossler;R. Gouaty;C. Gräf;P. Graff;M. Granata;A. Grant;S. Gras;C. Gray;R. Greenhalgh;A. Gretarsson;P. Groot;H. Grote;S. Grunewald;G. Guidi;C. Guido;X. Guo;K. Gushwa;E. Gustafson;R. Gustafson;J. Hacker;E. Hall;G. Hammond;M. Hanke;J. Hanks;C. Hanna;M. Hannam;J. Hanson;T. Hardwick;J. Harms;G. Harry;I. Harry;M. Hart;M. Hartman;C. Haster;K. Haughian;S. Hee;A. Heidmann;M. Heintze;G. Heinzel;H. Heitmann;P. Hello;G. Hemming;M. Hendry;I. Heng;A. Heptonstall;M. Heurs;M. Hewitson;S. Hild;D. Hoak;K. Hodge;D. Hofman;S. Hollitt;K. Holt;P. Hopkins;D. Hosken;J. Hough;E. Houston;E. Howell;Y. Hu;E. Huerta;B. Hughey;S. Husa;S. Huttner;M. Huynh;T. Huynh--Dinh-T.-Huynh--Dinh-1381195806;A. Idrisy;N. Indik;D. Ingram;R. Inta;G. Islas;J. Isler;T. Isogai;B. Iyer;K. Izumi;M. Jacobson;H. Jang;P. Jaranowski;S. Jawahar;Y. Ji;F. Jiménez-Forteza;W. Johnson;D. Jones;R. Jones;R. Jonker;L. Ju;V. Kalogera;S. Kandhasamy;G. Kang;J. Kanner;M. Kasprzack;E. Katsavounidis;W. Katzman;H. Kaufer;S. Kaufer;T. Kaur;K. Kawabe;F. Kawazoe;F. Kéfélian;G. M. Keiser;D. Keitel;D. Kelley;W. Kells;D. Keppel;A. Khalaidovski;F. Khalili;E. Khazanov;C. Kim;K. Kim;N. Kim;N. Kim;Y. Kim;E. King;P. King;D. Kinzel;J. Kissel;S. Klimenko;J. Kline;S. Koehlenbeck;K. Kokeyama;V. Kondrashov;M. Korobko;W. Korth;I. Kowalska;D. Kozak;V. Kringel;B. Krishnan;A. Królak;C. Krueger;G. Kuehn;A. Kumar;P. Kumar;L. Kuo;A. Kutynia;M. Landry;B. Lantz;S. Larson;P. Lasky;A. Lazzarini;C. Lazzaro;J. Le;P. Leaci;S. Leavey;E. Lebigot;E. Lebigot;C. Lee;H. Lee;H. Lee;M. Leonardi;J. Leong;N. Leroy;N. Letendre;Y. Levin;B. Levine;J. Lewis;T. G. F. Li;K. Libbrecht;A. Libson;A. Lin;T. Littenberg;N. Lockerbie;V. Lockett;J. Logue;A. Lombardi;M. Lorenzini;V. Loriette;M. Lormand;G. Losurdo
Erratum: First narrow-band search for continuous gravitational waves from known pulsars in advanced detector data [Phys. Rev. D 96 , 122006 (2017)]
勘误表:首次在先进探测器数据中对来自已知脉冲星的连续引力波进行窄带搜索 [Phys.
DOI: 10.1103/physrevd.97.129903
发表时间: 2018
期刊: Physical Review D
影响因子: 5
作者: [Abbott B]
通讯作者: Abbott B
DOI: 10.1088/1361-6382/aaaafa
发表时间: 2018-03-22
期刊: CLASSICAL AND QUANTUM GRAVITY
影响因子: 3.5
作者: [Abbott, B. P., Abbott, R., Zweizig, J.]
通讯作者: Zweizig, J.
共 8 条
    Gravitational wave astronomy
    • 批准号:
      ST/V000551/1
    • 项目类别:
      Research Grant
    • 资助金额:
      $51.06万
    • 财政年份:
      2021
    • 负责人:
      Nils Andersson
    • 依托单位:
    General Relativistic Astrophysics
    • 批准号:
      ST/R00045X/1
    • 项目类别:
      Research Grant
    • 资助金额:
      $131.92万
    • 财政年份:
      2018
    • 负责人:
      Nils Andersson
    • 依托单位:
    Modelling compact objects for precision astrophysics
    • 批准号:
      ST/J00135X/1
    • 项目类别:
      Research Grant
    • 资助金额:
      $76.09万
    • 财政年份:
      2012
    • 负责人:
      Nils Andersson
    • 依托单位:
    Sources for gravitational wave astronomy
    • 批准号:
      ST/H002359/1
    • 项目类别:
      Research Grant
    • 资助金额:
      $54.11万
    • 财政年份:
      2010
    • 负责人:
      Nils Andersson
    • 依托单位:
    海外基金