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Mössbauer Spectroscopy

The most common system used for Mössbauer Spectroscopy is the X-20, which has vibration levels of 3-5nm. Used less frequently for Mössbauer are the LT3-WMX-1SS series of cryocoolers and the X-19OP with the low vibration feature attached. Please consult the factory for more details and options.

X-20
Ultra Low Vibration

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The Ultra Low Vibration Interface allows for 3-5 nm of vibration at the sample. This system uses a helium exchange gas to decouple the cryocooler from the interface. This system comes standard with 4 window ports and has an F/1.4. The minimum sample space is 1.9 inches in diameter by 1.5 inches long. A wide variety of options are available for easy sample change and translation capabilities.

Cryostat Model Type Power Cost
CS202*F-DMX-20 CCR A Relative Display of Cooling Power increasing from 1-4 Snowflakes A Relative Display of Initial Monitary Cost From 1-4 Dollar SignsA Relative Display of Initial Monitary Cost From 1-4 Dollar Signs
CS204*F-DMX-20 CCR A Relative Display of Cooling Power increasing from 1-4 SnowflakesA Relative Display of Watts of Cooling Power increasing from 1-4 Snowflakes A Relative Display of Initial Monitary Cost From 1-4 Dollar SignsA Relative Display of Initial Monitary Cost From 1-4 Dollar SignsA Relative Display of Initial Monitary Cost From 1-4 Dollar Signs
CS210*F-GMX-20 CCR A Relative Display of Cooling Power increasing from 1-4 SnowflakesA Relative Display of Watts of Cooling Power increasing from 1-4 SnowflakesA Relative Display of Watts of Cooling Power increasing from 1-4 Snowflakes A Relative Display of Initial Monitary Cost From 1-4 Dollar SignsA Relative Display of Initial Monitary Cost From 1-4 Dollar SignsA Relative Display of Initial Monitary Cost From 1-4 Dollar SignsA Relative Display of Initial Monitary Cost From 1-4 Dollar Signs

X-19-OP
Sample in Vapor

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These sample in vapor closed cycle cryostats feature a fast sample change and quick cooldown times. The helium vapor is particularly useful for cooling samples that do not conduct heat well. The optical systems come standard with 4 window ports and with warm and cold windows. A variety of options allow this system to be customized to fit the researcher's needs, including custom tail pieces, load lock gate valves and low vibration interfaces.

Cryostat Model Type Power Cost
CS204*F-FMX-19-OP CCR A Relative Display of Cooling Power increasing from 1-4 SnowflakesA Relative Display of Watts of Cooling Power increasing from 1-4 Snowflakes A Relative Display of Initial Monitary Cost From 1-4 Dollar SignsA Relative Display of Initial Monitary Cost From 1-4 Dollar SignsA Relative Display of Initial Monitary Cost From 1-4 Dollar Signs
CS210*F-GMX-19-OP CCR A Relative Display of Cooling Power increasing from 1-4 SnowflakesA Relative Display of Watts of Cooling Power increasing from 1-4 SnowflakesA Relative Display of Watts of Cooling Power increasing from 1-4 Snowflakes A Relative Display of Initial Monitary Cost From 1-4 Dollar SignsA Relative Display of Initial Monitary Cost From 1-4 Dollar SignsA Relative Display of Initial Monitary Cost From 1-4 Dollar SignsA Relative Display of Initial Monitary Cost From 1-4 Dollar Signs

X-1SS
High Performance

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This high performance vacuum shroud is well suited for electrical, magnetic, and optical experiments. It has 5 window ports and has F/0.8 to collect weak signals. The vacuum shroud attaches via a double o-ring which allows for rotation under vacuum. The nickel plated copper radiation shield provides a durable low emissivity finish. This system can achieve vacuum levels of 10-7 Torr.

Cryostat Model Type Power Cost
CS202*I-DMX-1SS CCR A Relative Display of Cooling Power increasing from 1-4 SnowflakesA Relative Display of Watts of Cooling Power increasing from 1-4 Snowflakes A Relative Display of Initial Monitary Cost From 1-4 Dollar Signs
CS204*I-FMX-1SS CCR A Relative Display of Cooling Power increasing from 1-4 SnowflakesA Relative Display of Watts of Cooling Power increasing from 1-4 SnowflakesA Relative Display of Watts of Cooling Power increasing from 1-4 Snowflakes A Relative Display of Initial Monitary Cost From 1-4 Dollar SignsA Relative Display of Initial Monitary Cost From 1-4 Dollar Signs
CS210*I-GMX-1SS CCR A Relative Display of Cooling Power increasing from 1-4 SnowflakesA Relative Display of Watts of Cooling Power increasing from 1-4 SnowflakesA Relative Display of Watts of Cooling Power increasing from 1-4 SnowflakesA Relative Display of Watts of Cooling Power increasing from 1-4 Snowflakes A Relative Display of Initial Monitary Cost From 1-4 Dollar SignsA Relative Display of Initial Monitary Cost From 1-4 Dollar SignsA Relative Display of Initial Monitary Cost From 1-4 Dollar Signs
LT3-WMX-1SS Flow A Relative Display of Cooling Power increasing from 1-4 SnowflakesA Relative Display of Watts of Cooling Power increasing from 1-4 SnowflakesA Relative Display of Watts of Cooling Power increasing from 1-4 SnowflakesA Relative Display of Watts of Cooling Power increasing from 1-4 Snowflakes A Relative Display of Initial Monitary Cost From 1-4 Dollar Signs