The authors use MAFIA to analyze the PEP-II button-type beam position monitor (BPM). Employing proper termination of the BPM into a coaxial cable, the output signal at the BPM is determined. Thus the issues of signal sensitivity and power output can be addressed quantitatively, including all transient effects and wakefields. Besides this first quantitative analysis of a true BPM 3D structure, they find that internal resonant modes are a major-source of high value narrow-band impedances. The effects of these resonances on coupled-bunch instabilities are discussed. An estimate of the power dissipation in the ceramic vacuum seal under high current operation is given
In this paper we present a novel and original four channel front-end developed for a beam position m...
Abstract Beam Position Monitors (BPM) are non-destructive diagnostics devices used in particle acce...
This pbar note is to describe a recent checkout of the AP3, AP2, AP1 and P2 (F11 to F17) Beam Positi...
The authors use MAFIA to analyze the PEP-II button-type beam position monitors (BPMs). Employing pro...
The beam position monitor (BPM) was designed to provide a robust UHV feedthru and a reliable electro...
An extreme operation mode such as the BESSY VSR conditions stimulates the development of a high acc...
High current B-Factory BPM designs incorporate a button type electrode which introduces a small gap ...
Following the observation of a Transverse Mode Coupling Instability (TMCI) in the SPS [1, 2], a syst...
Beam position monitor (BPM) coefficients are calculated from induced charges on four-button BPMs in ...
In many particle accelerators, a large number of high frequency beam position monitors (BPMs) are re...
In the BE-Newsletter issue 24 in December 2018 it was introduced that the instabilities regarding th...
The impedance spectrum presented by the PEP-II RF cav-ity to the beam is calculated using a 3D MAFIA...
The impedance represented by the beam surroundings leads to collective effects which limit the inten...
In the present contribution results of a simulation of linear-cut Beam Position Monitors (BPMs) base...
Growth of circulating current in the storage rings drastically increases heating of the beam positio...
In this paper we present a novel and original four channel front-end developed for a beam position m...
Abstract Beam Position Monitors (BPM) are non-destructive diagnostics devices used in particle acce...
This pbar note is to describe a recent checkout of the AP3, AP2, AP1 and P2 (F11 to F17) Beam Positi...
The authors use MAFIA to analyze the PEP-II button-type beam position monitors (BPMs). Employing pro...
The beam position monitor (BPM) was designed to provide a robust UHV feedthru and a reliable electro...
An extreme operation mode such as the BESSY VSR conditions stimulates the development of a high acc...
High current B-Factory BPM designs incorporate a button type electrode which introduces a small gap ...
Following the observation of a Transverse Mode Coupling Instability (TMCI) in the SPS [1, 2], a syst...
Beam position monitor (BPM) coefficients are calculated from induced charges on four-button BPMs in ...
In many particle accelerators, a large number of high frequency beam position monitors (BPMs) are re...
In the BE-Newsletter issue 24 in December 2018 it was introduced that the instabilities regarding th...
The impedance spectrum presented by the PEP-II RF cav-ity to the beam is calculated using a 3D MAFIA...
The impedance represented by the beam surroundings leads to collective effects which limit the inten...
In the present contribution results of a simulation of linear-cut Beam Position Monitors (BPMs) base...
Growth of circulating current in the storage rings drastically increases heating of the beam positio...
In this paper we present a novel and original four channel front-end developed for a beam position m...
Abstract Beam Position Monitors (BPM) are non-destructive diagnostics devices used in particle acce...
This pbar note is to describe a recent checkout of the AP3, AP2, AP1 and P2 (F11 to F17) Beam Positi...