基本信息
浏览量:117
职业迁徙
个人简介
Professor Rajagopal enjoys thinking about QCD at high temperature and/or density, where various phases of matter in which the quarks and gluons do not coalesce into hadrons or nuclei are found, because understanding these liquids requires linking usually disparate strands of theoretical physics including particle and nuclear physics, cosmology, astrophysics, condensed matter physics and string theory. Heavy ion collision experiments at the Relativistic Heavy Ion Collider (RHIC) and the Large Hadron Collider (LHC) recreate droplets of the hot quark-gluon plasma that filled the microseconds-old universe and show that it is a strongly coupled liquid. Understanding the properties of this phase of matter and how it emerges from QCD is a central challenge for the coming decade. Professor Rajagopal is incorporating insights obtained via gauge/string duality, perturbative QCD calculations, and hydrodynamics in modeling how jets produced in heavy ion collisions are modified via their passage through liquid quark-gluon plasma and how the wakes they leave behind in the droplet of liquid relax and evolve, discerning the most effective ways to use measurements of jets to probe the microscopic structure of this primordial liquid and understand how it forms and hydrodynamics as remarkably quickly as it does. The longer term challenge is to use the data to learn how a strongly coupled liquid which shows no signs of the individual particles of which it is made can emerge from QCD, a quest which resonates with challenges that are central to contemporary condensed matter physics. Professor Rajagopal has also analyzed the critical point in the QCD phase diagram and the interplay of hydrodynamics and fluctuations near it. He has proposed signatures for its experimental detection, showing how to use the collision-energy scan now underway at RHIC to search for the critical point in a large region of the QCD phase diagram.
Professor Rajagopal has also described the properties of the superfluid, color superconducting, quark matter that may lie at the centers of neutron stars, providing a clear understanding of the properties of matter at extraordinarily high densities. His work shows that cold quark matter at the highest densities is the QCD analogue of a superconductor but that if you could look at it using ordinary light it would look like a transparent insulator.
Professor Rajagopal has also described the properties of the superfluid, color superconducting, quark matter that may lie at the centers of neutron stars, providing a clear understanding of the properties of matter at extraordinarily high densities. His work shows that cold quark matter at the highest densities is the QCD analogue of a superconductor but that if you could look at it using ordinary light it would look like a transparent insulator.
研究兴趣
论文共 178 篇作者统计合作学者相似作者
按年份排序按引用量排序主题筛选期刊级别筛选合作者筛选合作机构筛选
时间
引用量
主题
期刊级别
合作者
合作机构
PHYSICAL REVIEW LETTERSno. 26 (2024)
30TH INTERNATIONAL CONFERENCE ON ULTRA-RELATIVISTIC NUCLEUS-NUCLEUS COLLISIONS, QUARK MATTER 2023 (2024): 10006-10006
arxiv(2024)
引用0浏览0引用
0
0
Ron Belmonta,Jasmine Brewer,Quinn Brodskyc,Paul Caucal,Megan Connors,Magdalena Djordjevic,Raymond Ehlers,Miguel A. Escobedo,Elena G. Ferreiro,Giuliano Giacalone,Yoshitaka Hatta,Jack Holguinm, Weiyao Ken,Zhong-Bo Kang,Amit Kumar,Aleksas Mazeliauskas,Yacine Mehtar-Tani, Genki Nukazuka,Daniel Pablos,Dennis V. Perepelitsat,Krishna Rajagopal,Anne M. Sickles, Michael Stricklandv,Konrad Tywoniuk,Ivan Vitev,Xin-Nian Wang,Zhong Yang,Fanyi Zhao
NUCLEAR PHYSICS A (2024)
arxiv(2024)
引用0浏览0引用
0
0
P. Achenbach,D. Adhikari,A. Afanasev,F. Afzal,C. A. Aidala,A. Al-bataineh,D. K. Almaalol,M. Amaryan,D. Androić,W. R. Armstrong,M. Arratia,J. Arrington,A. Asaturyan,E. C. Aschenauer,H. Atac,H. Avakian,T. Averett,C. Ayerbe Gayoso,X. Bai,K. N. Barish, N. Barnea,G. Basar,M. Battaglieri, A. A. Baty,I. Bautista,A. Bazilevsky, C. Beattie,S. C. Behera, V. Bellini, R. Bellwied,J. F. Benesch,F. Benmokhtar,C. A. Bernardes,J. C. Bernauer,H. Bhatt,S. Bhatta, M. Boer, T. J. Boettcher,S. A. Bogacz, H. J. Bossi,J. D. Brandenburg,E. J. Brash,R. A. Briceño,W. J. Briscoe,S. J. Brodsky, D. A. Brown, V. D. Burkert, H. Caines,I. A. Cali,A. Camsonne,D. S. Carman,J. Caylor,S. Cerci,M. Chamizo Llatas,S. Chatterjee,J. P. Chen, Y. Chen, Y. -C. Chen,Y. -T. Chien, P. -C. Chou, X. Chu,E. Chudakov,E. Cline,I. C. Cloët,P. L. Cole, M. E. Connors,M. Constantinou,W. Cosyn,S. Covrig Dusa, R. Cruz-Torres, U. D'Alesio,C. da Silva,Z. Davoudi, C. T. Dean,D. J. Dean, M. Demarteau, A. Deshpande,W. Detmold, A. Deur, B. R. Devkota,S. Dhital,M. Diefenthaler,S. Dobbs,M. Döring, X. Dong,R. Dotel,K. A. Dow,E. J. Downie,J. L. Drachenberg,A. Dumitru,J. C. Dunlop,R. Dupre,J. M. Durham,D. Dutta,R. G. Edwards,R. J. Ehlers,L. El Fassi,M. Elaasar, L. Elouadrhiri,M. Engelhardt,R. Ent, S. Esumi,O. Evdokimov,O. Eyser,C. Fanelli, R. Fatemi,I. P. Fernando,F. A. Flor,N. Fomin,A. D. Frawley,T. Frederico,R. J. Fries,C. Gal,B. R. Gamage,L. Gamberg, H. Gao,D. Gaskell, F. Geurts,Y. Ghandilyan,N. Ghimire, R. Gilman,C. Gleason,K. Gnanvo, R. W. Gothe, S. V. Greene, H. W. Grießhammer,S. K. Grossberndt,B. Grube, D. C. Hackett,T. J. Hague,H. Hakobyan, J. -O. Hansen,Y. Hatta,M. Hattawy, L. B. Havener,O. Hen,W. Henry, D. W. Higinbotham, T. J. Hobbs, A. M. Hodges,T. Holmstrom,B. Hong,T. Horn,C. R. Howell,H. Z. Huang, M. Huang, S. Huang,G. M. Huber,C. E. Hyde,E. L. Isupov,P. M. Jacobs, J. Jalilian-Marian,A. Jentsch, H. Jheng,C. -R. Ji,X. Ji,J. Jia, D. C. Jones,M. K. Jones, N. Kalantarians,G. Kalicy,Z. B. Kang,J. M. Karthein, D. Keller,C. Keppel, V. Khachatryan,D. E. Kharzeev, H. Kim, M. Kim, Y. Kim, P. M. King, E. Kinney, S. R. Klein,H. S. Ko,V. Koch,M. Kohl,Y. V. Kovchegov,G. K. Krintiras,V. Kubarovsky,S. E. Kuhn, K. S. Kumar,T. Kutz, J. G. Lajoie,J. Lauret,I. Lavrukhin, D. Lawrence, J. H. Lee, K. Lee,S. Lee, Y. -J. Lee, S. Li, W. Li, Xiaqing Li, Xuan Li,J. Liao,H. -W. Lin,M. A. Lisa, K. -F. Liu, M. X. Liu, T. Liu,S. Liuti, N. Liyanage,W. J. Llope, C. Loizides, R. Longo, W. Lorenzon,S. Lunkenheimer, X. Luo, R. Ma, B. McKinnon,D. G. Meekins,Y. Mehtar-Tani,W. Melnitchouk,A. Metz, C. A. Meyer,Z. -E. Meziani,R. Michaels,J. K. L. Michel, R. G. Milner,H. Mkrtchyan,P. Mohanmurthy,B. Mohanty, V. I. Mokeev,D. H. Moon,I. A. Mooney,C. Morningstar, D. P. Morrison,B. Müller, S. Mukherjee,J. Mulligan,C. Munoz Camacho,J. A. Murillo Quijada,M. J. Murray, S. A. Nadeeshani,P. Nadel-Turonski,J. D. Nam,C. E. Nattrass, G. Nijs,J. Noronha,J. Noronha-Hostler,N. Novitzky,M. Nycz,F. I. Olness, J. D. Osborn,R. Pak,B. Pandey, M. Paolone,Z. Papandreou,J. -F. Paquet, S. Park,K. D. Paschke,B. Pasquini, E. Pasyuk,T. Patel, A. Patton,C. Paudel,C. Peng,J. C. Peng, H. Pereira Da Costa,D. V. Perepelitsa, M. J. Peters,P. Petreczky,R. D. Pisarski,D. Pitonyak,M. A. Ploskon,M. Posik,J. Poudel, R. Pradhan,A. Prokudin,C. A. Pruneau,A. J. R. Puckett, P. Pujahari, J. Putschke,J. R. Pybus,J. -W. Qiu,K. Rajagopal,C. Ratti, K. F. Read, R. Reed,D. G. Richards,C. Riedl,F. Ringer,T. Rinn,J. Rittenhouse West, J. Roche,A. Rodas,G. Roland, F. Romero-López, P. Rossi,T. Rostomyan, L. Ruan,O. M. Ruimi,N. R. Saha,N. R. Sahoo, T. Sakaguchi, F. Salazar, C. W. Salgado,G. Salmè, S. Salur,S. N. Santiesteban,M. M. Sargsian,M. Sarsour, N. Sato,T. Satogata, S. Sawada,T. Schäfer, B. Scheihing-Hitschfeld,B. Schenke, S. T. Schindler, A. Schmidt,R. Seidl,M. H. Shabestari,P. E. Shanahan, C. Shen, T. -A. Sheng, M. R. Shepherd,A. M. Sickles, M. D. Sievert,K. L. Smith, Y. Song, A. Sorensen, P. A. Souder,N. Sparveris,S. Srednyak,A. G. Stahl Leiton, A. M. Stasto, P. Steinberg, S. Stepanyan,M. Stephanov,J. R. Stevens, D. J. Stewart,I. W. Stewart,M. Stojanovic, I. Strakovsky,S. Strauch,M. Strickland,D. Sunar Cerci,M. Suresh, B. Surrow,S. Syritsyn,A. P. Szczepaniak,A. S. Tadepalli,A. H. Tang, J. D. Tapia Takaki, T. J. Tarnowsky,A. N. Tawfik, M. I. Taylor, C. Tennant, A. Thiel, D. Thomas, Y. Tian, A. R. Timmins, P. Tribedy,Z. Tu,S. Tuo, T. Ullrich,E. Umaka, D. W. Upton, J. P. Vary,J. Velkovska,R. Venugopalan, A. Vijayakumar,I. Vitev,W. Vogelsang, R. Vogt,A. Vossen,E. Voutier,V. Vovchenko,A. Walker-Loud, F. Wang, J. Wang, X. Wang, X. -N. Wang,L. B. Weinstein,T. J. Wenaus,S. Weyhmiller,S. W. Wissink, B. Wojtsekhowski, C. P. Wong, M. H. Wood,Y. Wunderlich,B. Wyslouch,B. W. Xiao,W. Xie,W. Xiong,N. Xu,Q. H. Xu, Z. Xu, D. Yaari, X. Yao, Z. Ye,Z. H. Ye,C. Yero,F. Yuan, W. A. Zajc, C. Zhang, J. Zhang, F. Zhao, Y. Zhao,Z. W. Zhao,X. Zheng, J. Zhou,M. Zurek
Journal of High Energy Physicsno. 2 (2022)
加载更多
作者统计
#Papers: 177
#Citation: 15918
H-Index: 53
G-Index: 126
Sociability: 6
Diversity: 2
Activity: 20
合作学者
合作机构
D-Core
- 合作者
- 学生
- 导师
数据免责声明
页面数据均来自互联网公开来源、合作出版商和通过AI技术自动分析结果,我们不对页面数据的有效性、准确性、正确性、可靠性、完整性和及时性做出任何承诺和保证。若有疑问,可以通过电子邮件方式联系我们:report@aminer.cn