Beam Position Diagnostics with Higher Order Modes in Third Harmonic Superconducting Accelerating Cavities

Beam Position Diagnostics with Higher Order Modes in Third Harmonic Superconducting Accelerating Cavities PDF Author: Pei Zhang
Publisher:
ISBN:
Category :
Languages : en
Pages : 147

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Beam Position Diagnostics with Higher Order Modes in Third Harmonic Superconducting Accelerating Cavities

Beam Position Diagnostics with Higher Order Modes in Third Harmonic Superconducting Accelerating Cavities PDF Author: Pei Zhang
Publisher:
ISBN:
Category :
Languages : en
Pages : 147

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Beam Diagnostics in Superconducting Accelerating Cavities

Beam Diagnostics in Superconducting Accelerating Cavities PDF Author: Pei Zhang
Publisher: Springer Science & Business Media
ISBN: 3319007599
Category : Science
Languages : en
Pages : 128

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Book Description
An energetic charged particle beam introduced to an rf cavity excites a wakefield therein. This wakefield can be decomposed into a series of higher order modes and multipoles, which for sufficiently small beam offsets are dominated by the dipole component. This work focuses on using these dipole modes to detect the beam position in third harmonic superconducting S-band cavities for light source applications. A rigorous examination of several means of analysing the beam position based on signals radiated to higher order modes ports is presented. Experimental results indicate a position resolution, based on this technique, of 20 microns over a complete module of 4 cavities. Methods are also indicated for improving the resolution and for applying this method to other cavity configurations. This work is distinguished by its clarity and potential for application to several other international facilities. The material is presented in a didactic style and is recommended both for students new to the field, and for scientists well-versed in the field of rf diagnostics.

A Study of Beam Position Diagnostics with Beam-excited Dipole Higher Order Modes Using a Downconverter Test Electronics in Third Harmonic 3.9 GHz Superconducting Accelerating Cavities at FLASH

A Study of Beam Position Diagnostics with Beam-excited Dipole Higher Order Modes Using a Downconverter Test Electronics in Third Harmonic 3.9 GHz Superconducting Accelerating Cavities at FLASH PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 54

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Using Higher Order Modes in Superconducting Accelerating Cavities for Beam Monitoring

Using Higher Order Modes in Superconducting Accelerating Cavities for Beam Monitoring PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 3

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Dipole modes have been shown to be successful diagnostics for the beam position in superconducting accelerating cavities at the Free Electron Laser in Hamburg (FLASH) facility at DESY. By help of downmixing electronics the signals from the two higher order mode (HOM) couplers mounted on each cavity are monitored. The calibration, based on singular value decomposition, is more complicated than in standard position monitors. Position like signals based on this calibration are currently being in the process of being included in the control system. A second setup based on digitizing the spectrum from the HOM couplers has been used for monitoring monopole modes. The beam phase with respect to the RF has been thus monitored. The position calibration measurements and phase monitoring made at the FLASH are presented.

Using Higher Order Modes in Superconducting Accelerating Cavities for Beam Monitoring

Using Higher Order Modes in Superconducting Accelerating Cavities for Beam Monitoring PDF Author: J. May
Publisher:
ISBN:
Category :
Languages : en
Pages : 3

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Book Description
Dipole modes have been shown to be successful diagnostics for the beam position in superconducting accelerating cavities at the Free Electron Laser in Hamburg (FLASH) facility at DESY. By help of downmixing electronics the signals from the two higher order mode (HOM) couplers mounted on each cavity are monitored. The calibration, based on sigular value decomposition, is more complicated than in standard position monitors. Position like signals based on this calibration are currently being in the process of being included in the control system. A second setup based on digitizing the spectrum from the HOM couplers has been used for monitoring monopole modes. The beam phase with respect to the RF has been thus monitored. The position calibration measurements and phase monitoring made at the FLASH are presented.

High Precision Superconducting Cavity Diagnostics With Higher Order Mode Measurements

High Precision Superconducting Cavity Diagnostics With Higher Order Mode Measurements PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 13

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Book Description
Experiments at the FLASH facility at DESY have demonstrated that the higher order modes induced in superconducting cavities can be used to provide a variety of beam and cavity diagnostics. The axes of the modes can be determined from the beam orbit that produces minimum power in the dipole HOM modes. The phase and amplitude of the dipole modes can be used to obtain high resolution beam position information, and the phase of the monopole modes to measure the beam phase relative to the accelerator rf. For most superconducting accelerators, the existing higher order mode couplers provide the necessary signals, and the downmix and digitizing electronics are straightforward, similar to those for a conventional beam position monitor.

Higher Order Mode Spectra and the Dependence of Localized Dipole Modes on the Transverse Beam Position in Third Harmonic Superconducting Cavities at FLASH

Higher Order Mode Spectra and the Dependence of Localized Dipole Modes on the Transverse Beam Position in Third Harmonic Superconducting Cavities at FLASH PDF Author: Pei Zhang
Publisher:
ISBN:
Category :
Languages : en
Pages : 122

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Resolution Study of Higher-order-mode-based Beam Position Diagnostics Using Custom-built Electronics in Strongly Coupled 3.9-GHz Multi-cavity Accelerating Module

Resolution Study of Higher-order-mode-based Beam Position Diagnostics Using Custom-built Electronics in Strongly Coupled 3.9-GHz Multi-cavity Accelerating Module PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Beam-excited higher order modes (HOMs) can provide remote diagnostics information of the beam position and cavity misalignment. In this paper we report on recent studies on the resolution with specially selected series of modes with custom-built electronics. This constitutes the first report of measurements of these cavities in which we obtained a resolution of 20 micron in beam offset. Details of the setup of the electronics and HOM measurements are provided.

Higher Order Mode-based Beam and Cavity Diagnostics in 1.3 GHz Superconducting Cavities at FLASH

Higher Order Mode-based Beam and Cavity Diagnostics in 1.3 GHz Superconducting Cavities at FLASH PDF Author: Junhao Wei
Publisher:
ISBN:
Category :
Languages : en
Pages :

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High Precision SC Cavity Alignment Measurements with Higher Order Modes

High Precision SC Cavity Alignment Measurements with Higher Order Modes PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 5

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Book Description
Experiments at the FLASH linac at DESY have demonstrated that the higher order modes (HOMs) induced in superconducting cavities can be used to provide a variety of beam and cavity diagnostics. The centers of the cavities can be determined from the beam orbit which produces minimum power in the dipole HOM modes. The phase and amplitude of the dipole modes can be used as a high resolution beam position monitor. For most superconducting accelerators, the existing HOM couplers provide the necessary signals, and the downmix and digitizing electronics are straightforward, similar to those for a conventional BPM.