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High average current, transportable energy recovery linacs (ERLs) can be very attractive tools for a number of applications including next generation high-luminosity, compact light sources. Conventional ERLs are based on an electron beam…

加速器物理 · 物理学 2017-12-05 I. V. Konoplev , K. Metodiev , A. J. Lancaster , G. Burt , R. Ainsworth , A. Seryi

This paper uses theory and simulation of the Beam Break-Up instability (BBU) for multi-turn ERLs to determine and to optimize the current limit of the Cornell Brookhaven Energy-Recovery-Linac Test Accelerator (CBETA). Currently under…

加速器物理 · 物理学 2018-12-27 William Lou , Georg Heinz Hoffstaetter

The maximum beam current can be accelerated in an Energy Recovery Linac (ERL) can be severely limited by the transverse multi-pass beam breakup instability (BBU), especially in future ERL light sources with multi-GeV high energy beam energy…

加速器物理 · 物理学 2015-06-18 Si Chen , Miho Shimada , Norio Nakamura , Senlin Huang , Kexin Liu , Jia-er Chen

The maximum achievable beam current in an Energy Recovery Linac (ERL) is often constrained by Beam Breakup (BBU) instability. Our previous research highlighted that filling patterns have a substantial impact on BBU instabilities in…

加速器物理 · 物理学 2024-09-05 Sadiq Setiniyaz , R. Apsimon , P. H. Williams , C. Barbagallo , S. A. Bogacz , R. M. Bodenstei , K. Deitrick

In order for sources of coherent high brightness and intensity THz and X-Ray radiation to be accepted by university or industrial R&D laboratories, truly compact, high current and efficient particle accelerators are required. The demand for…

加速器物理 · 物理学 2016-09-21 R. Ainsworth , G. Burt , I. V. Konoplev , A. Seryi

MESA (Mainz Energy recovery Superconducting Accelerator) is an energy recovery linac (ERL) which is under construction at Johannes Gutenberg University in Mainz. It will be operated in external beam (EB) mode with 150 $\mu$A electron beam…

加速器物理 · 物理学 2021-02-02 S. Glukhov , O. Boine-Frankenheim , C. Stoll , F. Hug

Compact, reliable and little consuming accelerators are required for the treatment of tumours with ions. TERA proposes the "cyclinac", composed of a high-frequency, fast-cycling linac which boosts the energy of the particles previously…

加速器物理 · 物理学 2012-06-18 U. Amaldi , D. Bergesio , R. Bonomi , A. Degiovanni , M. Garlasché , P. Magagnin , S. Verdú-Andrés , R. Wegner

In a multipass energy recovery linac (ERL), each cavity must regain all energy expended from beam acceleration during beam deceleration, and the beam should achieve specific energy targets during each loop that returns it to the linac. For…

The conceptional design of the proposed linear electron-positron collider TESLA is based on 9-cell 1.3 GHz superconducting niobium cavities with an accelerating gradient of Eacc >= 25 MV/m at a quality factor Q0 > 5E+9. The design goal for…

加速器物理 · 物理学 2009-11-06 B. Aune

The Tera Electronvolt Superconducting Linear Accelerator TESLA is the only linear electron-positron collider project based on superconductor technology for particle acceleration. In the first stage with 500 GeV center-of-mass energy an…

This design report describes the construction plans for the world's first multi-pass SRF ERL. It is a 4-pass recirculating linac that recovers the beam's energy by 4 additional, decelerating passes. All beams are returned for deceleration…

Prior to establishing operation of the world's first mulit-turn superconducting Energy Recovery Linac, (ERL) the Cornell-BNL Energy Recovery Test Accelerator (CBETA) was configured for one turn energy recovery. In this setup, direct…

Both the Energy Recovery Linac (ERL) and Free Electron laser (FEL) are considered to be candidates of the fourth generation light source. It is proposed to combine FEL into an ERL facility to integrate the advantages of both ERL and FEL,…

加速器物理 · 物理学 2015-06-16 Xiao-Hao Cui , Yi Jiao , Jiu-Qing Wang , Shu-Hong Wang

Beam breakup instability is a potential issue for all particle accelerators and is often the limiting factor for the maximum beam current that can be achieved. This is particularly relevant for Energy Recovery Linacs with multiple passes…

加速器物理 · 物理学 2021-06-30 Sadiq Setiniyaz , Robert Apsimon , Peter H. Williams

A new cavity-chain layout has been proposed for the main linac of the TESLA linear collider. This superstructure-layout is based upon four 7-cell superconducting standing-wave cavities, coupled by short beam pipes. The main advantages of…

加速器物理 · 物理学 2007-05-23 N. Baboi , M. Ferrario , M. Liepe , J. Sekutowicz

Superconducting linacs are capable of producing intense, stable, high-quality electron beams that have found widespread applications in science and industry. The 9-cell 1.3-GHz superconducting standing-wave accelerating RF cavity originally…

加速器物理 · 物理学 2017-04-25 A. Halavanau , N. Eddy , D. Edstrom , E. Harms , A. Lunin , P. Piot , A. Romanov , J. Ruan , N. Solyak , V. Shiltsev

Three alternative designs of the European Spallation Source (ESS) high energy linac are described. The most promising ones are either a normalconducting (nc) coupled cavity linac (CCL) up tofinal energy or a change at 407 MeV to only one…

加速器物理 · 物理学 2007-05-23 M. Pabst , K. Bongardt , A. Letchford

FLASH and the European XFEL are SASE-FEL user facilities, at which superconducting TESLA cavities are operated in a pulsed mode to accelerate long bunch-trains. Several cavities are powered by one klystron. While the low-level rf system is…

加速器物理 · 物理学 2017-10-16 Thorsten Hellert , Martin Dohlus , Winfried Decking

A proposal for a 10-120 mA proton linac employing superconducting beta-graded, CERN type, four cell cavities at 352 MHz is presented. The high energy part (100 MeV-1 GeV) of the machine is split in three beta-graded sections, and transverse…

acc-phys · 物理学 2008-11-26 C. Pagani , G. Bellomo , P. Pierini

The LHeC provides an intense, high energy electron beam to collide with the LHC. It represents the highest energy application of energy recovery linac (ERL) technology which is increasingly recognized as one of the major pilot technologies…

加速器物理 · 物理学 2022-06-16 S. Alex Bogacz , Bernhard J. Holzer , John A. Osborne
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