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Low- and Intermediate-Energy Accelerators

Longitudinal stacking of ion beams with pulsed electron beam cooling

He Zhao and Lijun Mao

Phys. Rev. Accel. Beams 26, 030101 (2023) - Published 7 March, 2023

Experimental exploration of compressed beam dynamics in an energy recovery linac with comparison to simulations

Miho Shimada, Norio Nakamura, Tsukasa Miyajima, Yosuke Honda, Takashi Obina, Ryukou Kato, Masafumi Fukuda, Nora P. Norvell, Olga Tanaka, and Hiroshi Sakai

Phys. Rev. Accel. Beams 26, 030102 (2023) - Published 22 March, 2023

Synchrotron Radiation and Free-Electron Lasers

Reconstruction of x-ray free-electron laser pulse duration and energy chirp from spectral intensity fluctuations

River R. Robles, Aliaksei Halavanau, David Cesar, Alberto Lutman, and Gennady Stupakov

Phys. Rev. Accel. Beams 26, 030701 (2023) - Published 2 March, 2023

Transverse gradient undulator in a storage ring x-ray free electron laser oscillator

Yuanshen Li, Ryan Lindberg, and Kwang-Je Kim

Phys. Rev. Accel. Beams 26, 030702 (2023) - Published 8 March, 2023

New Acceleration Techniques

Modeling of three-dimensional betatron oscillation and radiation reaction in plasma accelerators

Yulong Liu and Ming Zeng

Phys. Rev. Accel. Beams 26, 031301 (2023) - Published 2 March, 2023

Underdense plasma lens with a transverse density gradient

C. E. Doss, R. Ariniello, J. R. Cary, S. Corde, H. Ekerfelt, E. Gerstmayr, S. J. Gessner, M. Gilljohann, C. Hansel, B. Hidding, M. J. Hogan, A. Knetsch, V. Lee, K. Marsh, B. O’Shea, P. San Miguel Claveria, D. Storey, A. Sutherland, C. Zhang, and M. D. Litos

Phys. Rev. Accel. Beams 26, 031302 (2023) - Published 30 March, 2023

Beam Control, Diagnostics, and Feedback

Active nonperturbative stabilization of the laser-plasma-accelerated electron beam source

Curtis Berger, Sam Barber, Fumika Isono, Kyle Jensen, Joseph Natal, Anthony Gonsalves, and Jeroen van Tilborg

Phys. Rev. Accel. Beams 26, 032801 (2023) - Published 15 March, 2023

Measurement of the longitudinal bunch-shape distribution for a high-intensity negative hydrogen ion beam in the low-energy region

R. Kitamura, K. Futatsukawa, N. Hayashi, K. Hirano, Y. Kondo, S. Kosaka, T. Miyao, T. Morishita, Y. Nemoto, and H. Oguri

Phys. Rev. Accel. Beams 26, 032802 (2023) - Published 20 March, 2023

Inverse modeling of circular lattices via orbit response measurements in the presence of degeneracy

D. Vilsmeier, R. Singh, and M. Bai

Phys. Rev. Accel. Beams 26, 032803 (2023) - Published 27 March, 2023

Relativistic, Multiple-Particle Dynamics

Scattered spectra from inverse Compton sources operating at high laser fields and high electron energies

G. A. Krafft, B. Terzić, E. Johnson, and G. Wilson

Phys. Rev. Accel. Beams 26, 034401 (2023) - Published 28 March, 2023

Computing, Machine Learning, and Algorithms

Bayesian optimization of the beam injection process into a storage ring

Chenran Xu (徐晨冉), Tobias Boltz, Akira Mochihashi, Andrea Santamaria Garcia, Marcel Schuh, and Anke-Susanne Müller

Phys. Rev. Accel. Beams 26, 034601 (2023) - Published 3 March, 2023

OTHER ARTICLES OF INTEREST

Electron-Beam Source with a Superconducting Niobium Tip

C.W. Johnson, A.K. Schmid, M. Mankos, R. Röpke, N. Kerker, I.S. Hwang, E.K. Wong, D.F. Ogletree, A.M. Minor, and A. Stibor

Phys. Rev. Applied 19, 034036 (2023) - Published 10 March, 2023

Electron-beam sources are foundational in high-resolution electron microscopy and spectroscopy, but applications have been limited due to their relatively large energy spread. The authors fabricate a monocrystalline niobium nanotip electron field emitter and characterize it in superconducting and normal-conducting regimes. This bright, stable, coherent electron beam source features an exceptionally narrow energy spread. The authors also study the role of xenon adsorption and two-electron correlations. This work may improve aberration-corrected microscopy and electron energy-loss spectroscopy and enable high-resolution vibrational spectroscopy or quantum electron microscopy.

Experimental Characterization of Photoemission from Plasmonic Nanogroove Arrays

Christopher M. Pierce, Daniel B. Durham, Fabrizio Riminucci, Scott Dhuey, Ivan Bazarov, Jared Maxson, Andrew M. Minor, and Daniele Filippetto

Phys. Rev. Applied 19, 034034 (2023) - Published 10 March, 2023

Observation of Monoenergetic Electrons from Two-Pulse Ionization Injection in Quasilinear Laser Wakefields

M. W. von der Leyen, J. Holloway, Y. Ma, P. T. Campbell, R. Aboushelbaya, Q. Qian, A. F. Antoine, M. Balcazar, J. Cardarelli, Q. Feng, R. Fitzgarrald, B. X. Hou, G. Kalinchenko, J. Latham, A. M. Maksimchuk, A. McKelvey, J. Nees, I. Ouatu, R. W. Paddock, B. Spiers, A. G. R. Thomas, R. Timmis, K. Krushelnick, and P. A. Norreys

Phys. Rev. Lett. 130, 105002 (2023) - Published 10 March, 2023

Laser-driven time-limited light-sail acceleration of protons for tumor radiotherapy

Y. F. Li, X. F. Shen, Y. L. Yao, S. Z. Wu, A. Pukhov, and B. Qiao

Phys. Rev. Research 5, L012038 (2023) - Published 20 March, 2023

A laser-driven time-limited light-sail acceleration scheme for proton tumor radiotherapy is proposed and demonstrated with combined three-dimensional particle-in-cell simulations and microdosimetry simulations. It is able to deliver a single-shot spread-out Bragg peak (SOBP) dose up to 1.76 Gy on a nanosecond timescale for shallow-seated tumors and around 0.56 Gy for deep-seated tumors.

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