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Following the successful design and fabrication of Damped Detuned Structures (DDS), the JLC/NLC linear collider project advanced to Rounded Damped Detuned Structures (RDDS) with curved cross section of the cavity shape for increased shunt…

High Energy Physics - Experiment · Physics 2007-05-23 N. Hitomi , Y. Funahashi , Y. Higashi , T. Higo , S. Koike , T. Suzuki , K. Takata , T. Takatomi , T. Toge , Y. Watanabe

Recent experiments at SLAC [1,2] and CERN [3] have revealed evidence of significant deformation in the form of "pitting" of the cells of the 1.8m series of structures DDS/RDDS (Damped Detuned Structure/Rounded Damped Detuned Structure).…

Accelerator Physics · Physics 2008-11-26 R. M. Jones , N. M. Kroll , T. Higo , Z. Li , R. H. Miller , T. O. Raubenheimer , J. W. Wang

Earlier RDDS (Rounded Damped Detuned Structures) [1,2], designed, fabricated and tested at SLAC, in collaboration with KEK, have been shown to damp wakefields successfully. However, electrical breakdown has been found to occur in these…

Accelerator Physics · Physics 2007-05-23 R. M. Jones , Z. Li , R. H. Miller , T. O. Raubenheimer , R. D. Ruth , G. V. Stupakov , J. W. Wang , N. M. Kroll

Following successful design and fabrication of damped detuned structures, the R&D for the accelerating structures of the NLC/JLC linear collider project proceeded to studies of Rounded Damped Detuned Structure with curved cross section of…

High Energy Physics - Experiment · Physics 2007-05-23 T. Higo , Y. Funahashi , Y. Higashi , N. Hitomi , T. Suzuki , K. Takata , T. Takatomi , N. Toge , Y. Watanabe , Z. Li , R. H. Miller , J. W. Wang

In fabricating the first X-Band RDDS (Rounded Damped Detuned Structure) accelerator structure, microwave measurements are made on short groups of discs prior to bonding the discs of the entire structure. The design dispersion curves are…

Accelerator Physics · Physics 2009-03-12 R. M. Jones , T. Higo , Y. Higashi , N. Toge , N. M. Kroll , R. J. Loewen , R. H. Miller , J. W. Wang

The complexity of the Round Damped Detuned Structue (RDDS) for the JLC/NLC main linac is driven by the considerations of rf efficiency and dipole wakefield suppression. As a time and cost saving measure for the JLC/NLC, the dimensions of…

A Damped Detuned Structure (DDS) for CLIC main linac has been proposed as an alternative to the present baseline design which is based on heavy damping. A first prototype, CLIC_DDS_A, for high power tests has been already designed and is…

Accelerator Physics · Physics 2011-10-07 A. D'Elia , R. M. Jones , V. F. Khan , A. Grudiev , W. Wuensch

The key feature of the improved coupling design in the Damped Detuned Structure (DDS) is focused on the four manifolds. Rectangular geometry slots and rectangular manifolds are used. This results in a significantly stronger coupling to the…

Accelerator Physics · Physics 2012-05-17 A. D'Elia , R. M. Jones , A. Grudiev , T. Higo , V. F. Khan , W. Wuensch

Operating the SLAC/KEK DDS (Damped Detuned Structure) X-band linacs at high gradients (in excess of 70MV/m) has recently been found to be limited by the accelerator structures breaking down and as a consequence severe damage occurs to the…

Accelerator Physics · Physics 2008-11-26 R. M. Jones , N. M. Kroll , T. Higo , R. H. Miller , R. D Ruth

We report on suppression of long-range wakefields in CLIC accelerating structures. Strong detuning and moderate damping is employed. In these initial design studies we focus on the CLIC_G structure and enforce a moderate Q of 300 and 500.…

Accelerator Physics · Physics 2009-06-22 V. F. Khan , R. M. Jones

In the JLC/NLC X-band linear collider, it is essential to reduce the long-range dipole wakefields in the accelerator structure to prevent beam break up (BBU) and emittance degradation. The two methods of reducing the long-range wakefields…

Accelerator Physics · Physics 2007-05-23 Z. Li , N. T. Folwell , T. O. Raubenheimer

The present design of the main accelerating structure for CLIC is based on heavy damping (WDS) with a Q of ~10. The wakefield suppression in this case entails locating the damping materials in relatively close proximity to the accelerating…

Accelerator Physics · Physics 2009-03-12 V. F. Khan , R. M. Jones

A damped detuned structure for the main X-band linacs of CLIC is being investigated as an alternative design to the present baseline heavily damped structure. In our earlier designs we studied detuned structures, operating at 11.994 GHz,…

Accelerator Physics · Physics 2014-11-21 V. F. Khan , A. D'Elia , A. Grudiev , R. M. Jones , W. Wuensch , R. Zennaro

The small bandwidth of superconducting cavities makes the study of dynamic Lorentz force detuning and its compensation indispensable in case of pulsed mode operation of high gradient accelerators. In this paper, we present the study of this…

Accelerator Physics · Physics 2014-04-11 Abhay Kumar , Arup Ratan Jana , Vinit Kumar

We show that scattering matrix calculations for dipole modes between 23-43 GHz for the 206 cell detuned structure (DS) are consistent with finite element calculations and results of the uncoupled model. In particular, the rms sum wake for…

Accelerator Physics · Physics 2007-05-23 C. Adolphsen , K. L. F. Bane , V. A. Dolgashev , K. Ko , Z. Li , R. Miller

High-gradient acceleration is a key research area that could enable compact linear accelerators for future colliders, light sources, and other applications. In the pursuit of high-gradient operation, RF breakdown limits the attainable…

Accelerator Physics · Physics 2025-11-24 Gaurab Rijal , Michael Shapiro , Xueying Lu

Electron beams of linear induction accelerators experience deflective forces caused by RF fields building up as a result of accelerating cavities of finite size. These forces can significantly effect the beam when a long linac composed of…

Accelerator Physics · Physics 2007-05-23 Scott D. Nelson , Michael Vella

In this work, we introduce a new design concept: the DC-Coupled Resistive Silicon Detectors, based on the LGAD technology. This new approach intends to address a few known features of the first generation of AC-Coupled Resistive Silicon…

RF superconductivity has become a major subfield of accelerator science. There has been an explosion in the number of accelerator applications and in the number of laboratories engaged. The first lecture at this meeting of the CAS presented…

Accelerator Physics · Physics 2015-01-29 H Padamsee

The main accelerating structures for the CLIC are designed to operate at an average accelerating gradient of 100 MV/m. The accelerating frequency has been optimised to 11.994 GHz with a phase advance of 2{\pi}/3 of the main accelerating…

Accelerator Physics · Physics 2010-10-05 V. F. Khan , A. D'Elia , A. Grudiev , R. M. Jones , W. Wuensch
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