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相关论文: Performance of PIP-II High-beta 650 Cryomodule Aft…

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The Proton Improvement Plan-II (PIP-II) is a major upgrade to the Fermilab accelerator complex, featuring a new 800-MeV Superconducting Radio-Frequency (SRF) linear accelerator (LINAC) powering the accelerator complex to provide the world's…

加速器物理 · 物理学 2023-08-23 M White , J Makara , S Ranpariya , L Pei , M Barba , J Subedi , J Dong , B Hansen , A E T Akintola , J Holzbauer , J Ozelis , S Chandrasekaran , V Roger

Phase-3 testing of the pHB650 cryomodule at the PIP-II Injector Test Facility was conducted to evaluate the effectiveness of heat load mitigations performed after earlier phases of testing and to continue pinpointing any sources of…

The PIP-II Project will see international shipment of cryomodules from Europe to the United States, and as such, the shocks which can occur during shipment pose a risk to the internal components. Of particular concern is the coupler ceramic…

加速器物理 · 物理学 2023-07-13 J. Helsper , S. Chandrasekaran , J. Holzbauer , N. Solyak

Six 650 MHz high-power couplers will be integrated into the prototype High Beta 650 MHz (HB650) cryomodule for the PIP-II project at Fermilab. The design of the coupler is described, including design optimizations from the previous…

加速器物理 · 物理学 2022-09-07 J. Helsper , S. Chandrasekaran , N. Solyak , S. Kazakov , K. Premo , G. Wu , F. Furuta , J. Ozelis , B. Hanna

The PIP-II project's LB650 cavities could potentially be vulnerable to mechanical deformation because of the geometric shape of the cavity due to reduced beta. The mechanical property of the niobium half-cell was measured following various…

As part of the PIP-II project at Fermilab, a pre-production cryomodule featuring 325 MHz Single Spoke Resonator type 2 (SSR2) superconducting RF cavities is under construction. These SSR2 cavities are fabricated by industry partners and…

An 8-cavity, 1.3 GHz, LCLS-II-HE cryomodule was assembled and tested at Fermilab to verify performance before the start of production. Its cavities were processed with a novel nitrogen doping treatment to improve gradient performance. The…

Electropolishing process and cathodes have undergone modification and optimization for both low- and high-beta 650 MHz five-cell niobium cavities for PIP-II. Cavities treated with these modified electropolishing conditions exhibited smooth…

加速器物理 · 物理学 2024-10-10 V. Chouhan , D. Bice , A. Cravatta , T. Khabiboulline , O. Melnychuk , A. Netepenko , G. Wu , B. Guilfoyle , T. Reid

The commissioning of two cryomodule components is underway at Fermilab's Superconducting Radio Frequency (SRF) Accelerator Test Facility. The research at this facility supports the next generation high intensity linear accelerators such as…

加速器物理 · 物理学 2012-08-10 M. W. McGee , J. Leibfritz , A. Martinez , Y. Pischalnikov , W. Schappert

Fermi National Accelerator Laboratory is constructing a superconducting 1.3 GHz cryomodule test facility located at the New Muon Lab building. The facility will be used for testing and validating cryomodule designs as well as support…

加速器物理 · 物理学 2012-06-29 A. Martinez , A. L. Klebaner , J. C. Theilacker , B. D. DeGraff , J. Leibfritz

The Proton Improvement Plan II (PIP-II) at Fermilab is a program of upgrades to the injection complex. At its core is the design and construction of a CW compatible, pulsed H- SRF linac. To validate the concept of the front-end of such…

The research note presents results of coupled RF and thermal simulation of a cryocooler conduction cooled 650 MHz SRF cavity made of bulk niobium and coated with Nb3Sn on the RF surface. The cavity is part of a particle accelerator design…

加速器物理 · 物理学 2022-10-25 Roman Kostin

Surface preparation of niobium superconducting RF cavities is a critical step for achieving good RF performance under the superconducting state. Surface defect, roughness, and contamination affect the accelerating gradient and quality…

加速器物理 · 物理学 2023-07-21 V. Chouhan , D. Bice , D. Burk , M. K. Ng , G. Wu

Fermi National Accelerator Laboratory is constructing an Advanced Accelerator Research and Development facility at New Muon Lab. The cryogenic infrastructure in support of the initial phase of the facility consists of two Tevatron style…

加速器物理 · 物理学 2012-09-13 A. Martinez , A. L. Klebaner , J. C. Theilacker , B. D. DeGraff , M. White , G. S. Johnson

Powered operation of Cryomodule 1 (CM-1) at the Fermilab SRF Beam Test Facility began in late 2010. Since then a series of tests first on the eight individual cavities and then the full cryomodule have been performed. We report on the…

A 3.9 GHz deflecting mode (pi, TM110) cavity has been long used for six-dimensional phase-space beam manipulation tests at the A0 Photo-Injector Lab (16 MeV) in Fermilab and their extended applications with vacuum cryomodules are currently…

加速器物理 · 物理学 2014-09-19 Young-Min Shin , Michael Church

In a partnership with SLAC National Accelerator Laboratory (SLAC) and Jefferson Lab, Fermilab will assemble and test 17 of the 35 total 1.3 GHz cryomodules for the Linac Coherent Light Source II (LCLS-II) Project. These devices will be…

加速器物理 · 物理学 2017-04-27 M. W. McGee , S. K. Chandrasekaran , A. C. Crawford , E. Harms , J. Leibfritz , G. Wu

The present contribution reports the design of the pre-production Single Spoke Resonator Type 2 Cryomodule (ppSSR2 CM), developed in the framework of the PIP-II project at Fermilab. The innovative design is based on a structure, the…

Superconducting radio-frequency cavities are commonly used in modern particle accelerators for applied and fundamental research. Such cavities are typically made of high-purity, bulk Nb and are cooled by a liquid helium bath at a…

仪器与探测器 · 物理学 2020-06-24 G. Ciovati , G. Cheng , U. Pudasaini , R. Rimmer

In a partnership with SLAC National Accelerator Laboratory (SLAC) and Jefferson Lab, Fermilab will assemble and test 17 of the 35 total 1.3 GHz cryomodules for the Linac Coherent Light Source II (LCLS-II) Project. These include a prototype…

加速器物理 · 物理学 2016-07-04 M. W. McGee , T. Arkan , T. Peterson , Z. Tang , S. Boo , M. Carrasco , E. Daly , N. Huque
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