Highlights

Permanent magnets for the return loop of the Cornell-Brookhaven energy recovery linac test accelerator

S. Brooks, G. Mahler, J. Cintorino, J. Tuozzolo, and R. Michnoff

Phys. Rev. Accel. Beams 23, 112401 (2020) - Published 30 November, 2020

A cost-effective method to construct accelerator-quality permanent magnets based on a single tuning method, that simultaneously corrects all sources of field errors, opens a pathway to other future applications.

Superconducting radio-frequency cavity fault classification using machine learning at Jefferson Laboratory

Chris Tennant, Adam Carpenter, Tom Powers, Anna Shabalina Solopova, Lasitha Vidyaratne, and Khan Iftekharuddin

Phys. Rev. Accel. Beams 23, 114601 (2020) - Published 30 November, 2020

Machine learning models identify both location and cause of superconducting rf cryomodule faults with an accuracy that approaches those of the human experts.

Novel X-band transverse deflection structure with variable polarization

P. Craievich et al.

Phys. Rev. Accel. Beams 23, 112001 (2020) - Published 13 November, 2020

A new X-band electromagnetic structure capable of full control of the angle of deflection opens new possibilities for extended beam characterization.

Collimation of partially stripped ions in the CERN Large Hadron Collider

A. Gorzawski, A. Abramov, R. Bruce, N. Fuster-Martinez, M. Krasny, J. Molson, S. Redaelli, and M. Schaumann

Phys. Rev. Accel. Beams 23, 101002 (2020) - Published 23 October, 2020

High-energy storage rings for partially stripped ions may need a different collimation system.

Guiding of high-intensity laser pulses in 100-mm-long hydrodynamic optical-field-ionized plasma channels

A. Picksley, A. Alejo, J. Cowley, N. Bourgeois, L. Corner, L. Feder, J. Holloway, H. Jones, J. Jonnerby, H. M. Milchberg, L. R. Reid, A. J. Ross, R. Walczak, and S. M. Hooker

Phys. Rev. Accel. Beams 23, 081303 (2020) - Published 26 August, 2020

High-intensity laser pulse for driving plasma accelerator has been guided in a low-density plasma channel up to 100 mm long.

Fast failures in the LHC and the future high luminosity LHC

B. Lindstrom, P. Bélanger, L. Bortot, R. Denz, M. Mentink, E. Ravaioli, F. Rodriguez Mateos, R. Schmidt, J. Uythoven, M. Valette, A. Verweij, C. Wiesner, D. Wollmann, and M. Zerlauth

Phys. Rev. Accel. Beams 23, 081001 (2020) - Published 11 August, 2020

Managing the risks of 700 MJ of stored beam energy.

Experimental study of wakefields driven by a self-modulating proton bunch in plasma

M. Turner et al. (AWAKE Collaboration)

Phys. Rev. Accel. Beams 23, 081302 (2020) - Published 4 August, 2020

Wakefield measurements by a relativistic proton bunch improve the understanding of self-modulation process in proton-driven plasma acceleration.

Compton recoil effects in staging of laser wakefield accelerators

M. J. V. Streeter and Z. Najmudin

Phys. Rev. Accel. Beams 23, 071602 (2020) - Published 14 July, 2020

Laser light reflected from the plasma mirror in staging of laser wakefield accelerators may interact with the electrons and increase electron energy spread.

Cooling simulation and experimental benchmarking for an rf-based electron cooler

H. Zhao, M. Blaskiewicz, A. V. Fedotov, W. Fischer, X. Gu, D. Kayran, J. Kewisch, C. Liu, S. Seletskiy, V. Schoefer, and P. Thieberger

Phys. Rev. Accel. Beams 23, 074201 (2020) - Published 1 July, 2020

The world’s first electron cooler using rf-accelerated electron bunches.

Equilibrium of an arbitrary bunch train in presence of a passive harmonic cavity: Solution through coupled Haïssinski equations

Robert Warnock and Marco Venturini

Phys. Rev. Accel. Beams 23, 064403 (2020) - Published 24 June, 2020

The beam equilibrium for arbitrary fill patterns is obtained from the solution of a system of coupled Haissinski equations.

Spectrotemporal control of soft x-ray laser pulses

Najmeh S. Mirian, Enrico Allaria, Niky Bruchon, Paolo Cinquegrana, Miltcho Boyanov Danailov, Giovanni De Ninno, Simone Di Mitri, Eugenio Ferrari, Luca Giannessi, Erik Hemsing, Giuseppe Penco, Eléonore Roussel, Simone Spampinati, Carlo Spezzani, Mauro Trovó, Marco Veronese, and Primož Rebernik Ribič

Phys. Rev. Accel. Beams 23, 060701 (2020) - Published 11 June, 2020

Tuning the seed laser parameters allows precise spectrotemporal control of fully coherent soft x-ray pulses in free electron lasers.

Submicropulse electron-beam dynamics correlated with short-range wakefields in Tesla-type superconducting rf cavities

A. H. Lumpkin, R. M. Thurman-Keup, D. Edstrom, and J. Ruan

Phys. Rev. Accel. Beams 23, 054401 (2020) - Published 4 May, 2020

Direct observation of short-range wakefield effects was made for the first time using a synchroscan streak camera to obtain images at the submicropulse time scale.

Generalization of coupled S-parameter calculation to compute beam impedances in particle accelerators

Thomas Flisgen, Erion Gjonaj, Hans-Walter Glock, and Andranik Tsakanian

Phys. Rev. Accel. Beams 23, 034601 (2020) - Published 11 March, 2020

A decomposition approach for the computation of the beam impedance of large complex structures.

Design of the future circular hadron collider beam vacuum chamber

I. Bellafont, M. Morrone, L. Mether, J. Fernández, R. Kersevan, C. Garion, V. Baglin, P. Chiggiato, and F. Pérez

Phys. Rev. Accel. Beams 23, 033201 (2020) - Published 6 March, 2020

The optimized vacuum chamber for a future higher-energy hadron collider minimizes electron cloud build-up, outgassing from synchrotron radiation, and heat leakage to the cold mass of the superconducting magnets, while maximizing pumping efficiency and ensuring mechanical stability during a magnet quench.

Design study for a compact laser-driven source for medical x-ray fluorescence imaging

Theresa Brümmer, Alexander Debus, Richard Pausch, Jens Osterhoff, and Florian Grüner

Phys. Rev. Accel. Beams 23, 031601 (2020) - Published 2 March, 2020

An outstanding example analysis of limitations of Thomson sources.

Visualization of relativistic laser pulses in underdense plasma

M. B. Schwab, E. Siminos, T. Heinemann, D. Ullmann, F. Karbstein, S. Kuschel, A. Sävert, M. Yeung, D. Hollatz, A. Seidel, J. Cole, S. P. D. Mangles, B. Hidding, M. Zepf, S. Skupin, and M. C. Kaluza

Phys. Rev. Accel. Beams 23, 032801 (2020) - Published 2 March, 2020

Relativistic electron-cyclotron resonance provides a nondestructive diagnostic for tracking the evolution of the pump laser distribution in a laser wakefield accelerator.

High-brightness electron beams for linac-based bunched beam electron cooling

D. Kayran et al.

Phys. Rev. Accel. Beams 23, 021003 (2020) - Published 21 February, 2020

High-quality electron bunches produced from a dc photocathode gun are accelerated in an rf linac to cool ions in two rings significantly altering the evolution of bunch length and emittance.

Frequency-detuning dependent transient coaxial rf coupler kick in an L-band long-pulse high-gradient rf photogun

Y. Chen, H.-J. Qian, M. Krasilnikov, M. Gross, I. Isaev, G. Loisch, A. Oppelt, and F. Stephan

Phys. Rev. Accel. Beams 23, 010101 (2020) - Published 21 January, 2020

A transverse kick resulting from the coaxial rf coupler in an rf gun has been systematically studied in simulations and further characterized in experiments.

dc septum magnet based on permanent magnet for next-generation light sources

Tsutomu Taniuchi, Takahiro Watanabe, Shiro Takano, Tsuyoshi Aoki, Kenji Fukami, Shinichi Matsubara, Kenichi Yanagida, Kazuhiro Hamato, Jun Kataoka, Kanichiro Ogata, Yoshiyuki Saito, and Kunihiro Kusano

Phys. Rev. Accel. Beams 23, 012401 (2020) - Published 2 January, 2020

A dc injection septum has been fabricated with a thin septum plate, a variable-field mechanism, minimized temperature dependence, and limited demagnetization.

Plasma lens-based beam extraction and removal system for plasma wakefield acceleration experiments

R. Pompili, E. Chiadroni, A. Cianchi, A. Del Dotto, L. Faillace, M. Ferrario, P. Iovine, and M. R. Masullo

Phys. Rev. Accel. Beams 22, 121302 (2019) - Published 30 December, 2019

Active plasma lens and collimators allow one to preserve the quality of the witness beam while removing the drive beam in plasma wakefield acceleration.

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