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Tender for The Supply and Install of A Cryomagnetic System For Low Temperature Physics Experiments

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Description

The University of Birmingham invites tenders for supply and installation of a liquid helium ("wet") cryostat fitted with high-field magnet - a cryomagnetic system - suitable for low-temperature physics experiments. The cryomagnetic system will form part of a research lab being established via a UKRI Future Leaders Fellowship funding award, for measuring high-field transport and magnetic properties of quantum materials at low temperatures. The cryomagnet is intended to accommodate a variety of probes and inserts, sourced separately, to allow a wide range of sample environment including access to very low temperature as well as a strong, homogenous and stable magnetic field. Funding stipulates that the system will be open to users outside the group, so the equipment interface should be user friendly, and should interface with existing computer code used in the group. The cryomagnetic system should house a superconducting magnet assembly with a maximum field strength of at least 16 T (with reversible polarity). The magnet must be able to be switched in and out of persistent-current or driven modes of operation in the standard manner for physics laboratory cryomagnets. Suitable current sources, cryogenic liquid monitors and temperature monitoring should also be included, with easy-to-use computer interfaces to allow MATLAB code to query all these values and send commands to control all aspects of the magnet, including magnetic field ramps. The instrument should connect directly with the University of Birmingham's helium liquefier system. It should be delivered, installed, and tested on site with a maintenance and service package, with provision of on-site training. Lot 1: The University of Birmingham invites tenders for supply and installation of a liquid helium ("wet") cryostat fitted with high-field magnet - a cryomagnetic system - suitable for low-temperature physics experiments. The cryomagnetic system will form part of a research lab being established via a UKRI Future Leaders Fellowship funding award, for measuring high-field transport and magnetic properties of quantum materials at low temperatures. The cryomagnet is intended to accommodate a variety of probes and inserts, sourced separately, to allow a wide range of sample environment including access to very low temperature as well as a strong, homogenous and stable magnetic field. Funding stipulates that the system will be open to users outside the group, so the equipment interface should be user friendly, and should interface with existing computer code used in the group. The cryomagnetic system should house a superconducting magnet assembly with a maximum field strength of at least 16 T (with reversible polarity). The magnet must be able to be switched in and out of persistent-current or driven modes of operation in the standard manner for physics laboratory cryomagnets. Suitable current sources, cryogenic liquid monitors and temperature monitoring should also be included, with easy-to-use computer interfaces to allow MATLAB code to query all these values and send commands to control all aspects of the magnet, including magnetic field ramps. The instrument should connect directly with the University of Birmingham's helium liquefier system. It should be delivered, installed, and tested on site with a maintenance and service package, with provision of on-site training.

Timeline

Publish date

11 days ago

Close date

in 19 days

Buyer information

University of Birmingham

Contact:
Teisha Rickus
Email:
T.Ravenscroft@bham.ac.uk

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