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CryoRaman Microscope

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X-ray Photoelectron Spectrometry (XPS) SPECS ProvenX
X-ray Photoelectron Spectrometry (XPS) SPECS ProvenX
Enhanced Sensitivity High Resolution ICP-MS Attom ES
Enhanced Sensitivity High Resolution ICP-MS Attom ES

CryoRaman Microscope

cryoRaman is a low-temperature Raman microscope with cryostat technology and advanced nanopositioner from attocube. The system allows for the acquisition of Raman images with superior spatial resolution at extremely low temperatures, down to 1.8K, in high magnetic fields up to 12 Tesla. Developed for scientists researching two-dimensional materials (MoS₂, WSe₂), phase transitions, excitons, and emerging quantum phenomena at temperatures close to absolute zero.

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  • Brand - Oxford Instruments
Oxford Instruments
Oxford Instruments

A multi-disciplinary research group with leading segment products such as AFM, Raman, Plasma, Confocal...

Key features


  • Seamless integration of high-performance Raman with cryogenic technology – the combination of sensitivity and modularity of the alpha300/WITec 360 Raman microscope with attocube's cryostat, magnet, and nanopositioner.
  • Wide operating temperature range from 1.8K to 300K – allowing observation of the shift and transformation of Raman/photoluminescence peaks with temperature, serving phase transition and quantum property research.
  • Strong magnetic fields up to 12 Tesla or vector – an ideal tool for studying van der Waals materials and spin-valley physics phenomena.
  • Superior spatial resolution – lateral resolution <400nm, good depth resolution reaching 2µm, detection of Raman peaks down to 10 rel. cm⁻¹, spectral resolution <0.8 rel. cm⁻¹.
  • Advanced optical technology for low temperatures – the highest NA cryogenic objective (0.82), ultra-low Z-axis vibration, precise laser power control (0.1 mW).
  • Flexible control and customization – complete polarization control in excitation and detection, automatic switching between optical and spectroscopic, automatic calibration, and time-correlated single photon counting mode.

Detailed description


Technology & principles

cryoRaman is a low-temperature Raman microscopy system that allows for Raman measurements and photoluminescence spectroscopy at extremely low temperatures (1.8K) and in strong magnetic fields, while still maintaining the ability to capture Raman images with high spatial resolution (lateral <400nm, depth 2µm). The device can be equipped with optimized monochromators for excitation wavelengths from VIS to NIR, complete polarization control, and the ability to detect Raman peaks at very low wavenumbers.

Common limitations of Raman

Quantum research in 2D materials (MoS₂, WSe₂) at extremely low temperatures and high magnetic fields requires very high sensitivity and spatial resolution – previous commercial Raman systems did not meet these requirements. Vibrations from the cryostat and cooling system degrade image quality. Optical alignment and sample positioning are complex.

Advantages of the cryoRaman system

  • cryoRaman – a system that combines high-performance Raman with a cryostat and strong magnets, achieving lateral resolution <400 nm at 2K and 9T (demonstrated on MoS₂/WSe₂).
  • Low-vibration closed cryostat (attoDRY) + cryogenic objective → Z vibration of only 1 nm peak-to-peak.
  • Precision nanopositioner for sample positioning and automatic focusing at low temperatures, Suite Seven software for centralized control.

Integration & expansion

  • Modular design, upgrades: excitation wavelengths (VIS–NIR), complete polarization control, TCSPC mode, laser power control via software, magnetic field upgrades (solenoid/vector).
  • Compatible with standard WITec accessories (TruePower, polarization, low‑wavenumber filter sets).
  • Complete solution for phase transition research, 2D materials, exciton, spin‑valley.

Detailed specifications


Parameter

Value

Operating temperature

1.8K – 300K

Maximum magnetic field (solenoid)

Up to 12 Tesla

Excitation wavelength

From VIS to NIR

Lateral resolution

<400 nm

Depth resolution

2 µm

Spectral resolution

<0.8 rel. cm⁻¹

Cryogenic objective

NA up to 0.82

Z-axis vibration (peak‑to‑peak)

1 nm

Laser power control

Accuracy 0.1 mW

Sensitivity (acquisition rate)

<1 ms per spectrum

Brand Oxford Instruments
CryoRaman Microscope
CryoRaman Microscope
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