Results 1 to 10 of about 3,790,950 (369)
High intensity X/γ photon beams for nuclear physics and photonics [PDF]
EPJ Web of Conferences, 2016 In this manuscript we review the challenges of Compton backscattering sources in advancing photon beam performances in the 1 – 20 MeV energy range, underlining the design criteria bringing to maximum spectral luminosity and briefly describing the main ...Serafini L., Alesini D., Bacci N., Bliss N., Cassou K., Curatolo C., Drebot I., Dupraz K., Giribono A., Petrillo V., Palumbo L., Vaccarezza C., Variola A., Zomer F. +13 moredoaj +5 more sourcesHigh-intensity lasers and research activities in China
High Power Laser Science and EngineeringThis paper provides an overview of the current status of ultrafast and ultra-intense lasers with peak powers exceeding 100 TW and examines the research activities in high-energy-density physics within China.Yutong Li, Liming Chen, Min Chen, Feng Liu, Yuqiu Gu, Bing Guo, Jianfei Hua, Taiwu Huang, Yuxin Leng, Fei Li, Lu Li, Ruxin Li, Chen Lin, Wei Lu, Zhihui Lyu, Wenjun Ma, Xiaonan Ning, Yujie Peng, Yang Wan, Jinguang Wang, Zhaohua Wang, Zhiyi Wei, Xueqing Yan, Jie Zhang, Baozhen Zhao, Zengxiu Zhao, Cangtao Zhou, Kainan Zhou, Weimin Zhou, Jianqiang Zhu, Ping Zhu +30 moredoaj +2 more sourcesP3: An installation for high-energy density plasma physics and ultra-high intensity laser–matter interaction at ELI-Beamlines
Matter and Radiation at Extremes, 2017 ELI-Beamlines (ELI-BL), one of the three pillars of the Extreme Light Infrastructure endeavour, will be in a unique position to perform research in high-energy-density-physics (HEDP), plasma physics and ultra-high intensity (UHI) (1022W/cm2) laser–plasma S. Weber, S. Bechet, S. Borneis, L. Brabec, M. Bučka, E. Chacon-Golcher, M. Ciappina, M. DeMarco, A. Fajstavr, K. Falk, E.-R. Garcia, J. Grosz, Y.-J. Gu, J.-C. Hernandez, M. Holec, P. Janečka, M. Jantač, M. Jirka, H. Kadlecova, D. Khikhlukha, O. Klimo, G. Korn, D. Kramer, D. Kumar, T. Lastovička, P. Lutoslawski, L. Morejon, V. Olšovcová, M. Rajdl, O. Renner, B. Rus, S. Singh, M. Šmid, M. Sokol, R. Versaci, R. Vrána, M. Vranic, J. Vyskočil, A. Wolf, Q. Yu +39 moredoaj +2 more sourcesFundamental Physics at the Intensity Frontier [PDF]
SLAC Report SLAC-R-991, 2012 Particle physics aims to understand the universe around us. The Standard Model of particle physics describes the basic structure of matter and forces, to the extent we have been able to probe thus far.J. Hewett, H. Weerts, R. Brock, J. Butler, B. Casey, J. Collar, A. Gouvea, R. Essig, Y. Grossman, W. Haxton, J. Jaros, C. Jung, Z. T. Lu, K. Pitts, Z. Ligeti, J. Patterson, M. Ramsey-Musolf, J. Ritchie, A. Roodman, K. Scholberg, C. Wagner, G. Zeller, S. Aefsky, A. Afanasev, K. Agashe, C. Albright, J. Alonso, C. Ankenbrandt, M. Aoki, C. Arguelles, N. Arkani-Hamed, J. R. Armendariz, C. Armendariz-Picon, E. A. Diaz, J. Asaadi, D. Asner, K. Babu, K. Bailey, O. Baker, B. Balantekin, B. Baller, M. Bass, B. Batell, J. Beacham, J. Behr, N. Berger, M. Bergevin, E. Berman, R. Bernstein, A. Bevan, M. Bishai, M. Blanke, S. Blessing, A. Blondel, T. Blum, G. Bock, A. Bodek, G. Bonvicini, F. Bossi, J. Boyce, R. Breedon, M. Breidenbach, S. Brice, R. Briere, S. Brodsky, C. Bromberg, A. Bross, T. Browder, D. Bryman, M. Buckley, R. Burnstein, E. Caden, P. Campana, Roberto Carlini, G. Carosi, C. Castromonte, R. Cenci, I. Chakaberia, M. C. Chen, C. Cheng, B. Choudhary, N. Christ, E. Christensen, M. Christy, T. Chupp, E. Church, D. Cline, T. Coan, P. Coloma, J. Comfort, L. Coney, J. Cooper, R. Cooper, R. Cowan, D. Cowen, D. Cronin-Hennessy, A. Datta, G. Davies, M. Demarteau, D. DeMille, A. Denig, R. Dermisek, A. Deshpande, M. Dewey, R. Dharmapalan, J. Dhooghe, M. Dietrich, M. Diwan, Z. Djurcic, S. Dobbs, M. Duraisamy, B. Dutta, H. Duyang, D. Dwyer, M. Eads, B. Echenard, S. Elliott, C. Escobar, J. Fajans, S. Farooq, C. Faroughy, J. Fast, B. Feinberg, J. Felde, G. Feldman, P. Fierlinger, P. F. Pérez, B. Filippone, P. Fisher, B. Flemming, K. Flood, R. Forty, M. Frank, A. Freyberger, A. Friedland, R. Gandhi, K. Ganezer, A. García, F. Garcia, S. Gardner, L. Garrison, A. Gasparian, S. Geer, V. Gehman, T. Gershon, M. Gilchriese, C. Ginsberg, I.Gogoladze, M. Gonderinger, M. Goodman, H. Gould, M. Graham, P. Graham, R. Gran, J. Grange, G. Gratta, J. Green, H. Greenlee, R. Group, E. Guardincerri, V. Gudkov, R. Guenette, A. Haas, A. Hahn, T. Han, T. Handler, J. Hardy, R. Harnik, D. Harris, F. Harris, P. Harris, J. Hartnett, B. He, B. Heckel, K. Heeger, S. Henderson, D. Hertzog, R. Hill, E. Hinds, D. Hitlin, R. Holt, N. Holtkamp, G. Horton-Smith, P. Huber, W. Huelsnitz, J. Imber, I. Irastorza, J. Jaeckel, I. Jaegle, C. James, A. Jawahery, D. Jensen, C. Jessop, B. Jones, H. Jostlein, T. Junk, A. Kagan, M. Kalita, Y. Kamyshkov, D. Kaplan, G. Karagiorgi, A. Karle, T. Katori, B. Kayser, R. Kephart, S. Kettell, Y. K. Kim, M. Kirby, K. Kirch, J. Klein, J. Kneller, A. Kobach, M. Kohl, J. Kopp, M. Kordosky, W. Korsch, I. Kourbanis, A. D. Krisch, P. Križan, A. Kronfeld, S. Kulkarni, K. Kumar, Y. Kuno, T. Kutter, T. Lachenmaier, M. Lamm, J. Lancaster, M. Lancaster, C. Lane, K. Lang, P. Langacker, S. Lazarević, T. Le, K. Lee, K. Lesko, Y. Li, M. Lindgren, A. Lindner, J. Link, D. Lissauer, L. Littenberg, B. Littlejohn, C. Liu, W. Loinaz, W. Lorenzon, W. Louis, J. Lozier, L. Ludovici, L. Lueking, C. Lunardini, D. MacFarlane, P. Machado, P. Mackenzie, J. Maloney, W. Marciano, W. Marsh, M. Marshak, J. Martin, C. Mauger, K. McFarland, C. Mcgrew, G. McLaughlin, D. McKeen, R. Mckeown, B. Meadows, R. Mehdiyev, D. Melconian, H. Merkel, M. Messier, J. Miller, G. Mills, U. K. Minamisono, S. Mishra, I. Mocioiu, S. M. Sher, R. Mohapatra, B. Monreal, C. Moore, J. Morfín, J. Mousseau, L. Moustakas, G. Mueller, P. Mueller, M. Muether, H. Mumm, C. Munger, H. Murayama, P. Nath, O. Naviliat-Cuncin, J. Nelson, D. Neuffer, J. Nico, A. Norman, D. Nygren, Y. Obayashi, T. O'Connor, Y. Okada, J. Olsen, L. Orozco, J. Orrell, J. Osta, B. Pahlka, J. Paley, V. Papadimitriou, M. Papucci, S. Parke, R. Parker, Z. Parsa, K. Partyka, A. Patch, J. Pati, R. Patterson, Z. Pavlovic, G. Paz, G. Perdue, D. Perevalov, G. Perez, R. Petti, W. Pettus, A. Piepke, M. Pivovaroff, R. Plunkett, C. Polly, M. Pospelov, R. Povey, A. Prakesh, M. Purohit, S. Raby, J. Raaf, R. Rajendran, S. Rajendran, G. Rameika, R. Ramsey, A. Rashed, B. Ratcliff, B. Rebel, J. Redondo, P. Reimer, D. Reitzner, F. Ringer, A. Ringwald, S. Riordan, B. Roberts, D. Roberts, R. Robertson, F. Robicheaux, M. Rominsky, R. Roser, J. Rosner, C. Rott, P. Rubin, N. Saito, M. Sánchez, S. Sarkar, H. Schellman, B. Schmidt, M. Schmitt, D. Schmitz, J. Schneps, A. Schopper, P. Schuster, A. Schwartz, M. Schwarz, J. Seeman, Y. Semertzidis, K. Seth, Q. Shafi, P. Shanahan, R. Sharma, S. Sharpe, M. Shiozawa, V. Shiltsev, K. Sigurdson, P. Sikivie, J. Singh, D. Sivers, T. Skwarnicki, N. Smith, J. Sobczyk, H. Sobel, M. Soderberg, Y. Song, A. Soni, P. Souder, A. Sousa, J. Spitz, M. Stancari, G. Stavenga, J. Steffen, S. Stepanyan, D. Stoeckinger, S. Stone, J. Strait, M. Strassler, I. Sulai, R. Sundrum, R. Svoboda, B. Szczerbinska, A. Szelc, T. Takeuchi, P. Tanedo, S. Taneja, J. Tang, D. Tanner, R. Tayloe, I. Taylor, J. Thomas, C. Thorn, X. Tian, B. Tice, M. Tobar, N. Tolich, N. Toro, I. Towner, Y. Tsai, R. Tschirhart, C. Tunnell, M. Tzanov, A. Upadhye, J. Urheim, S. Vahsen, A. Vainshtein, E. Valencia, R. D. Water, R. V. D. Water, M. Velasco, J. Vogel, P. Vogel, W. Vogelsang, Y. Wah, D. Walker, N. Weiner, A. Weltman, R. Wendell, W. Wester, M. Wetstein, C. White, L. Whitehead, J. Whitmore, E. Widmann, Gregor Wiedemann, J. Wilkerson, G. Wilkinson, P. Wilson, R. Wilson, W. Winter, M. Wise, J. Wodin, S. Wojcicki, B. Wojtsekhowski, T. Wongjirad, E. Worcester, J. Wurtele, T. Xin, J. Xu, T. Yamanaka, Y. Yamazaki, I. Yavin, J. Yeck, M. Yeh, M. Yokoyama, J. Yoo, A. Young, E. Zimmerman, K. Zioutas, M. Zisman, J. Zupan, R. Zwaska +467 moresemanticscholar +7 more sourcesHigh intensity cyclotrons for neutrino physics [PDF]
Nuclear Instruments and Methods in Physics Research Section A : Accelerators, Spectrometers, Detectors and Associated Equipment, 2018 Daniel Winklehner, Jungbae Bahng, L. Calabretta, A. Calanna, Alok Chakrabarti, J. M. Conrad, G. D’Agostino, Siddharta Dechoudhury, Vaishali Naik, Loyd Waites, Philip Weigel +10 moreopenalex +3 more sourcesBroadband Spectral Shaping of Regenerative Amplification with Extra-Cavity Waveplate for Cross Polarized Wave Generation
Applied Sciences, 2022 We demonstrated extra-cavity gain narrowing pre-compensating in a regenerative amplifier with a multi-order triple-wavelength waveplate (WP). With a 1.117 mm thickness quartz waveplate, which was placed on the stretcher, the gain narrowing effect was ...Baozhen Zhao, Xiaohua Zhang, Chong Lv, Qiushi Liu, Ji Zhang, Xianghao Meng, Mingjiang Ma, Guoqing Yang +7 moredoaj +1 more source