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Related papers: A Brief Review of Plasma Wakefield Acceleration

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Accelerator technology has advanced tremendously since the introduction of accelerators in the 1930s, and particle accelerators have become indispensable instruments in high energy physics (HEP) research to probe Nature at smaller and…

Accelerator Physics · Physics 2016-03-25 Pushpalatha Bhat , Vladimir Shiltsev

The concept of Dielectric Laser Acceleration (DLA) provides highest gradients among non-plasma particle accelerators. However, stable beam transport and staging have not been shown experimentally yet. We present a scheme that confines the…

Accelerator Physics · Physics 2018-11-28 Uwe Niedermayer , Thilo Egenolf , Oliver Boine-Frankenheim , Peter Hommelhoff

A novel approach to implement and control electron injection into the accelerating phase of a laser wakefield accelerator (LWFA) is presented. It utilizes a wire, which is introduced into the flow of a supersonic gas jet creating shock…

Plasma waves generated in the wake of intense, relativistic laser or particle beams can accelerate electron bunches to giga-electronvolt (GeV) energies in centimetre-scale distances. This allows the realization of compact accelerators…

The dynamic process of a laser or particle beam propagating from vacuum into underdense plasma has been investigated theoretically. Our theoretical model combines a Lagrangian fluid model with the classic quasistatic wakefield theory. It is…

Plasma Physics · Physics 2017-11-21 Ronghao Hu , Haiyang Lu , Yinren Shou , Jinqing Yu , Chia-erh Chen , Xueqing Yan

We present a conceptual design for a hybrid laser-to-beam-driven plasma wakefield accelerator. In this setup, the output beams from a laser-driven plasma wakefield accelerator (LWFA) stage are used as input beams of a new beam-driven plasma…

An optical injection scheme into the laser wakefield accelerator by preceding injection pulse is investigated by means of 3D numerical particle-in-cell simulations. Quasimonoenergetic hundred-pC electron bunches as short as 6 fs can be…

Plasma Physics · Physics 2020-03-06 Vojtěch Horný , Ondřej Klimo , Miroslav Krůs

Focusing petawatt-level laser beams to a variety of spot sizes for different applications is expensive in cost, labor and space. In this paper, we propose a plasma lens to flexibly resize the laser beam by utilizing the laser self-focusing…

Plasma Physics · Physics 2020-12-14 Ming Zeng , Alberto Martinez de la Ossa , Kristjan Poder , Jens Osterhoff

A laser pulse traveling through a plasma can excite large amplitude plasma waves that can be used to accelerate relativistic electron beams in a very short distance---a technique called laser wakefield acceleration. Many wakefield…

A novel approach for positron injection and acceleration in laser driven plasma wakefield is proposed. A theoretical model is developed and confirmed through PIC simulation. One ring-shaped beam and one co-axially propagating Gaussian beam…

SPARC_LAB is a facility designed for the production of FEL radiation and the exploration of advanced acceleration techniques using a high brightness electron photo-injector. Specifically, particle-driven plasma wakefield acceleration (PWFA)…

An electron beam has gained a maximum energy of 9 GeV per particle in a 1.3 m-long electron beam-driven plasma wakefield accelerator. The amount of charge accelerated in the spectral peak was 28.3 pC, and the root-mean-square energy spread…

A high-intensity laser beam propagating through a dense plasma drives a strong current that robustly sustains a strong quasi-static Mega Tesla-level azimuthal magnetic field. The transverse laser field efficiently accelerates electrons in…

Plasma Physics · Physics 2020-07-22 Z. Gong , F. Mackenroth , T. Wang , X. Q. Yan , T. Toncian , A. V. Arefiev

Radio frequency (RF) superconductivity has become a key technology for many modern particle accelerators. One of its most salient features of this technology is the ability of superconducting RF cavities to deliver high accelerating…

Accelerator Physics · Physics 2020-04-16 Hasan Padamsee

In the field of particle accelerators the most common use of RF cavities is to increase the particle velocity of traversing particles. This feature makes them one of the core ingredients of every accelerator, and in the case of linear…

Accelerator Physics · Physics 2011-11-22 Frank Gerigk

Laser wakefield accelerators promise to revolutionise many areas of accelerator science. However, one of the greatest challenges to their widespread adoption is the difficulty in control and optimisation of the accelerator outputs due to…

A new concept is proposed for accelerating positrons in a nonlinear plasma wakefield accelerator. By loading the wakefield (back of the plasma bubble) with a short electron bunch, an extended area of excessive plasma electron accumulation…

Plasma Physics · Physics 2021-10-22 Tianhong Wang , Vladimir Khudik , Gennady Shvets

Beam-driven plasma-wakefield acceleration based on external injection has the potential to significantly reduce the size of future accelerators. Stability and quality of the acceleration process substantially depends on the incoming bunch…

This document outlines a community-driven Design Study for a 10 TeV pCM Wakefield Accelerator Collider. The 2020 ESPP Report emphasized the need for Advanced Accelerator R\&D, and the 2023 P5 Report calls for the ``delivery of an end-to-end…

Accelerator Physics · Physics 2025-04-02 Spencer Gessner , Jens Osterhoff , Carl A. Lindstrøm , Kevin Cassou , Simone Pagan Griso , Jenny List , Erik Adli , Brian Foster , John Palastro , Elena Donegani , Moses Chung , Mikhail Polyanskiy , Lindsey Gray , Igor Pogorelsky , Gongxiaohui Chen , Gianluca Sarri , Brian Beaudoin , Ferdinand Willeke , David Bruhwiler , Joseph Grames , Yuan Shi , Robert Szafron , Angira Rastogi , Alexander Knetsch , Xueying Lu , Douglas Storey , Thomas Grismayer , Michael Ehrlichman , Maksim Kravchenko , Christiane Scherb , Vasyl Maslov , Claudio Emma , Daniel Kalvik , Ivan Rajkovic , Jean-Luc Vay , Michael Peskin , Tong Zhou , Jeroen van Tilborg , Patrick Meade , Mario Galletti , Carlo Benedetti , Stewart Boogert , Timothy Barklow , Antonino Di Piazza , Chaojie Zhang , Yiheng Ye , Stepan Bulanov , Pratik Manwani , Eric Esarey , Cameron Geddes , Livio Verra , Laura Corner , Oznur Apsimon , Vera Cilento , Allen Caldwell , Rachel Margraf-O'Neal , Qianqian Su , Michael Litos , Gerard Andonian , Mark Hogan , Carl Schroeder , Kei Nakamura , Jonathan Wood , Anthony Vazquez , Keegan Downham , Davide Terzani , Alexander Ody , Sarah Schroeder , Arianna Formenti , Ulascan Sarica , Thamine Dalichaouch , Patric Muggli , Rob Shalloo , Francesco Massimo , Alessandro Cianchi , Jorge Vieira , Felipe Peña , Chunguang Jing , Francesco Filippi , Pierre Drobniak , Dillon Merenich , Mariastefania De Vido , Massimo Ferrario , Robert Ariniello , Andrei Seryi , Weishuang Linda Xu , Gemma Costa , Jian Bin Ben Chen , Lewis Kennedy , Brendan O'Shea , Kevin Langhoff , Ole Gunnar Finnerud , Nathan Majernik , Lewis Boulton , Dimitrios Ntounis , Ankur Dhar , Thomas Schörner , Angelo Biagioni , Ariel Schwartzman , Kyoungchul Kong , Roman Pöschl , Sophia Morton , Gwanghui Ha , Samuel Homiller , John Farmer , Csaba Balazs , Jie Gao , River Robles , Emilio Nanni , Graham Wilson , Rogelio Tomas Garcia , Bluemlein Johannes , Juergen Reuter , Angeles Faus Golfe , Dirk Zerwas , Jan Kalinowski , Jonas Björklund Svensson , Ivanka Bozovic , Mohammad Mahdi Altakach , Marco Garten , Johannes Braathen , Francesco Giovanni Celiberto , Carolina Amoedo , Richard D'Arcy , Edda Gschwendtner , Joshua Gregory , Pavel Karataev , Patrick Koppenburg , Leonhard Reichenbach , Jan Pucek , Matthew Wing , Eduardo Granados , Nigel Watson , Tom Tong , Ivo Schulthess , Maria Enrica Biagini , Hossein Saberi , Jan Klamka , Guoxing Xia , Lars Reichwein , Kyrre Ness Sjobak , Andrea Renato Rossi , Steffen Doebert , Alban Sublet , Samuel Norman , Navid Vafaei-Najafabadi , Ans Pardons , Jonathan Bagger , Paul Grannis , Dongxing He , Keisho Hidaka , Alexander Pukhov , Eugene Bulyak , Leily Kiani , Naveen Pathak , William Li , Pouya Asadi , Anthony Gonsalves , Eir Eline Hørlyk , Fanting Kong , Lance Labun , Mahek Logantha , Ken Marsh , Michele Bergamaschi , Marcel Demarteau , Mikael Berggren , Maximilian Swiatlowski , Eleni Vryonidou , Oksana Chubenko , Philippe Piot , Katherine Fraser , Siddharth Karkare , Brigitte Cros , Armando Valter Felicio Zuffi , Nicole Hartman , Aishik Ghosh , Nelson Lopes , Jaron Shrock , Caterina Vernieri , Tor Raubenheimer , Marlene Turner , Katharine Leney , David Cooke , Louis Forrester , Thandikire Madula , Anna Giribono , Ou Labun , Sebastien Corde , Remi Lehe , Noe Gonzalez , Max Varverakis , Matthias Fuchs , Maxence Thevenet , Sharon Perez , Simon Knapen , Aodhan McIlvenny , Valentina Lee , Claire Hansel , Severin Diederichs , Alexander Scheinker , Rafi Hessami

Laser-plasma accelerators offer a compact means of producing high-energy electron beams, but their performance is fundamentally limited by dephasing between the accelerated electrons and the plasma wave. To overcome this limitation, we…

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