Efficient solution for accelerating very high intensity beams in the low and medium energy regime
Chuan Zhang, Holger Podlech, Ulrich Ratzinger, and Rudolf Tiede
Phys. Rev. Accel. Beams 22, 100101 (2019) - Published 4 October, 2019
S. Ahmed et al.
Phys. Rev. Accel. Beams 22, 102401 (2019) - Published 11 October, 2019
A newly developed pulsed low-inductance kicker magnet fed by a fast-switching power supply enables the TRIUMF cyclotron to serve multiple user programs with conflicting operational requirements.
Chuan Zhang, Holger Podlech, Ulrich Ratzinger, and Rudolf Tiede
Phys. Rev. Accel. Beams 22, 100101 (2019) - Published 4 October, 2019
S. Di Mitri, G. De Ninno, R. Fabris, S. Spampinati, and N. R. Thompson
Phys. Rev. Accel. Beams 22, 100701 (2019) - Published 10 October, 2019
Thorsten Hellert, Philipp Amstutz, Christoph Steier, and Marco Venturini
Phys. Rev. Accel. Beams 22, 100702 (2019) - Published 10 October, 2019
Yuri Shvyd’ko
Phys. Rev. Accel. Beams 22, 100703 (2019) - Published 25 October, 2019
V. Kain, F. M. Velotti, M. A. Fraser, B. Goddard, J. Prieto, L. S. Stoel, and M. Pari
Phys. Rev. Accel. Beams 22, 101001 (2019) - Published 9 October, 2019
Patrick Kramer and Christine Vollinger
Phys. Rev. Accel. Beams 22, 101002 (2019) - Published 17 October, 2019
V. Yakimenko, L. Alsberg, E. Bong, G. Bouchard, C. Clarke, C. Emma, S. Green, C. Hast, M. J. Hogan, J. Seabury, N. Lipkowitz, B. O’Shea, D. Storey, G. White, and G. Yocky
Phys. Rev. Accel. Beams 22, 101301 (2019) - Published 9 October, 2019
J. Kim and M. Yoon
Phys. Rev. Accel. Beams 22, 101601 (2019) - Published 4 October, 2019
Qiong Wu, Sergey Belomestnykh, Ilan Ben-Zvi, Michael M. Blaskiewicz, Thomas Hayes, Kevin Mernick, Freddy Severino, Kevin Smith, and Alex Zaltsman
Phys. Rev. Accel. Beams 22, 102001 (2019) - Published 29 October, 2019
S. Ahmed et al.
Phys. Rev. Accel. Beams 22, 102401 (2019) - Published 11 October, 2019
A newly developed pulsed low-inductance kicker magnet fed by a fast-switching power supply enables the TRIUMF cyclotron to serve multiple user programs with conflicting operational requirements.
G. Le Bec, S. Liuzzo, F. Villar, P. Raimondi, and J. Chavanne
Phys. Rev. Accel. Beams 22, 102402 (2019) - Published 14 October, 2019
Fay Hannon and Mark Stefani
Phys. Rev. Accel. Beams 22, 102801 (2019) - Published 23 October, 2019
Vijay Chouhan, Shigeki Kato, Keisuke Nii, Takanori Yamaguchi, Motoaki Sawabe, Takayuki Saeki, Hideaki Monjushiro, Hiroki Oikawa, Hayato Ito, Hitoshi Hayano, and Yoshiaki Ida
Phys. Rev. Accel. Beams 22, 103101 (2019) - Published 3 October, 2019
G. D. L. Semione, A. Dangwal Pandey, S. Tober, J. Pfrommer, A. Poulain, J. Drnec, G. Schütz, T. F. Keller, H. Noei, V. Vonk, B. Foster, and A. Stierle
Phys. Rev. Accel. Beams 22, 103102 (2019) - Published 31 October, 2019
Kai Zhou, Yuntao Song, Gen Chen, Kaizhong Ding, and Galina Karamysheva
Phys. Rev. Accel. Beams 22, 104001 (2019) - Published 17 October, 2019
A. Huschauer, H. Bartosik, S. Cettour Cave, M. Coly, D. Cotte, H. Damerau, G. P. Di Giovanni, S. Gilardoni, M. Giovannozzi, V. Kain, E. Koukovini-Platia, B. Mikulec, G. Sterbini, and F. Tecker
Phys. Rev. Accel. Beams 22, 104002 (2019) - Published 24 October, 2019
A. Bazzani, M. Giovannozzi, E. H. Maclean, C. E. Montanari, F. F. Van der Veken, and W. Van Goethem
Phys. Rev. Accel. Beams 22, 104003 (2019) - Published 24 October, 2019
Jonas Björklund Svensson, Tessa K. Charles, Olle Lundh, and Sara Thorin
Phys. Rev. Accel. Beams 22, 104401 (2019) - Published 23 October, 2019
Ji Qiang
Phys. Rev. Accel. Beams 22, 104601 (2019) - Published 23 October, 2019
Sergey N. Galyamin, Viktor V. Vorobev, and Andrey V. Tyukhtin
Phys. Rev. Accel. Beams 22, 109901 (2019) - Published 10 October, 2019
Constantin Aniculaesei, Vishwa Bandhu Pathak, Kyung Hwan Oh, Prashant Kumar Singh, Bo Ram Lee, Calin Ioan Hojbota, Tae Gyu Pak, Enrico Brunetti, Byung Ju Yoo, Jae Hee Sung, Seong Ku Lee, Hyung Taek Kim, and Chang Hee Nam
Phys. Rev. Applied 12, 044041 (2019) - Published 17 October, 2019
Nanoparticles in a laser-produced plasma can act as a sensitive control knob for inducing highly localized electron injection. The benefits of nanoparticles for laser-plasma electron accelerators have not been examined, though, due to complex effects on the plasma fluid and difficulties in getting nanoparticles into the plasma. Here the authors demonstrate nanoparticle-assisted laser wakefield acceleration by succeeding at incorporating nanoparticles into the plasma medium, obtaining prominent enhancement of beam quality by controlling the electron injection process. This work could promote applications of nanoscience to laser-plasma accelerators, and open a path to .
Yue-Yue Chen, Pei-Lun He, Rashid Shaisultanov, Karen Z. Hatsagortsyan, and Christoph H. Keitel
Phys. Rev. Lett. 123, 174801 (2019) - Published 22 October, 2019