Ultra fine multifunctional liquid helium free low-temperature optical system
- Product Item : 26565
- Category:
optical instrument
- Ultra fine multifunctional liquid helium free low-temperature optical system
- Laboratory instruments
- biological instruments
- electronic laboratory instruments,
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Ultra fine multifunctional liquid helium free low-temperature optical system
Montana Instruments has launched a new ultra fine multifunctional liquid helium free low-temperature optical system - CryoAdvanceTM. This system is a next-generation standardized product produced using new performance standards and architecture, and can be fixed using a universal optical desktop, making it easy to use. The use of shock absorption technology and special temperature stabilization technology provides temperature stability and ultra-low vibration environment for experiments without sacrificing any convenience. Nowadays, the CryoAdvance series products come in a variety of models, configurations, options, and accessories to meet the unique needs of every researcher.
Application field:
Diamond color center, NV color center, quantum computing, quantum optics, cavity quantum electrodynamics, spintronics, magneto-optical Kerr effect, single photon emission
Basic features:
Low temperature fluctuations and nanoscale vibrations can provide a stable experimental environment for various measurements.
The ultra large temperature range (3.2K -350K) and ultra fast temperature change speed can improve experimental efficiency.
★ A fully dry system that does not require the consumption of helium or liquid helium, which can reduce experimental costs.
Practical advantages:
The intuitive user interface and fully automatic control system have improved experimental efficiency.
The electrical and optical channels, as well as sample installation, have greatly improved experimental flexibility.
★ Fully integrated and turnkey design solution, allowing you to quickly start and implement research plans.
Desktop design scheme, easy to move, seamlessly connecting with existing room temperature experimental schemes.