2008Nuclear TechniquesRequires access

A stability monitor system for macromolecule crystallography beamline of BSRF

Peng Liu

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Abstract

In this paper we present the structure and primary results of a stability monitor system, which is newly constructed for a macromolecule crystallography station (1W2B) of Beijing Synchrotron Radiation Facility (BSRF). The system consists of optimized double-blades beam position monitor (BPM), double-wires BPM, fluorescence target, ion chamber, and fluorescence detector etc. It monitors the incident beam at front end and sample position and finds the source of beam instability immediately. Otherwise, by virtue of the system, the position of the electron orbit in insertion device can also be monitored in real time that gives an important advice of building slow feedback system of BSRF.

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What this paper is about

In this paper we present the structure and primary results of a stability monitor system, which is newly constructed for a macromolecule crystallography station (1W2B) of Beijing Synchrotron Radiation Facility (BSRF). The system consists of optimized double-blades beam position monitor (BPM), double-wires BPM, fluorescence target, ion chamber, and fluorescence detector etc. It monitors the incident beam at front end and sample position and finds the source of beam instability immediately. Otherwise, by virtue of the system, the position of the electron orbit in insertion device can also be monitored in real time that gives an important advice of building slow feedback system of BSRF.

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Available abstract

In this paper we present the structure and primary results of a stability monitor system, which is newly constructed for a macromolecule crystallography station (1W2B) of Beijing Synchrotron Radiation Facility (BSRF). The system consists of optimized double-blades beam position monitor (BPM), double-wires BPM, fluorescence target, ion chamber, and fluorescence detector etc. It monitors the incident beam at front end and sample position and finds the source of beam instability immediately. Otherwise, by virtue of the system, the position of the electron orbit in insertion device can also be monitored in real time that gives an important advice of building slow feedback system of BSRF.

Key concepts: Beamline, Synchrotron radiation, Synchrotron, Optics, Beam (structure), Detector, Position (finance), Materials science

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