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Optical cryostat 4 K CryoAdvance™

The CryoAdvance™ optical cryostat from Montana Instruments is a closed, helium-free system designed for cutting-edge optical experiments that require extreme stability and minimal vibration. It offers a temperature range from 3.2 K to 350 K with the possibility of extension to 1.2 K and is available in four models – CryoAdvance-50, CryoAdvance-100, CryoAdvance-S200, and CryoAdvance-200 PT . Thanks to precise control and full automation, it ensures fast, reliable, and safe operation without the typical risks of cryogenic handling.

Key features

  • Temperature range 3.2–350 K, optionally extendable to 1.2 K
  • Low vibration at the nanometer level
  • High temperature stability for long-term measurements
  • Unobstructed optical access via up to 5 viewports
  • Option to integrate high-numerical-aperture lenses and magnetic modules
  • Up to 20 electrical feedthroughs for combining optical and electrical measurements
  • Full automation of the evacuation, cooling, stabilization, and regeneration processes
Aleš Jandík
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Ing. Aleš Jandík

+420 607 014 292

jandik@optixs.cz

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Product description

CryoAdvance™ has become the standard for advanced optical experiments in quantum optics, photonics, and spectroscopy. Thanks to its advanced vibration isolation, it enables even the most sensitive applications, such as optomechanical resonators, micro-PL measurements, or quantum cavitation experiments. The cryostat can be placed directly on an optical table as a normal optical component, which greatly simplifies integration into existing experimental setups.

The system provides free optical access from five sides and is designed with exceptional modularity. It offers a wide selection of feedthroughs (DC, RF, optical fibers, gas lines), sample holders, cover types, and optional magnetic fields. This variability saves time and money when configuring an experiment.

Operation is fully automated. The cryostat independently controls vacuuming, cooling, temperature stabilization, and system regeneration using dry nitrogen. The built-in compressor uses variable helium flow, which is automatically optimized for minimum cooling time, lower energy consumption, and longer system life. The composite sample holder design compensates for thermal contraction, ensuring high rigidity and minimal drift even when the temperature changes.

Parameters

CryoAdvance-50 CryoAdvance-100 s200 200 PT
Base temperature ✔✔✔✔✔ ✔✔✔✔ ✔✔✔ ✔✔✔
Vibrations ✔✔✔✔✔ ✔✔✔✔ ✔✔✔✔ ✔✔✔
Sample space ✔✔✔ ✔✔✔✔ ✔✔✔✔✔ ✔✔✔✔✔
Cool down time ✔✔✔✔ ✔✔✔✔ ✔✔ ✔✔✔
Cooling capacity ✔✔✔✔✔ ✔✔✔ ✔✔ ✔✔✔✔✔

Usage

  • Color defect centers
  • Cavity quantum electrodynamics
  • Quantum emitters/detectors
  • Color defect centers
  • Cavity quantum electrodynamics
  • Quantum emitters and detectors
  • Photoluminescence and micro-PL measurements
  • Spectroscopy and microscopy
  • Magnetism, spintronics, and MOKE measurements
  • Terahertz spectroscopy
  • Pump-probe experiments

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Expert advisor

Aleš Jandík

Ing. Aleš Jandík