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Featuring a Dewar-based cryogenic architecture and a newly developed Pan-type scanner head, the UHV low-temperature scanning probe microscope system provides a highly stable platform for atomic-scale characterization. The system is compatible with qPlus AFM, also supports a wide range of extensive modules, including optical, magnetic, and electrical measurements, etc. It also enables in-situ sample preparation using MBE and rapid sample transfer between MBE and SPM stage.

Featuring an original remote liquefaction architecture, the UHV cryogen-free low-temperature scanning probe microscope system enables long-term stable operation below 2 K without liquid helium consumption, requiring only a small amount of helium gas. The system is compatible with qPlus AFM and can be extended with advanced experimental modules, including superconducting magnets, ESR, TERS, THz spectroscopy, and electrical transport measurements.

Featuring an original remote liquefaction architecture, the UHV cryogen-free low-temperature scanning probe microscope system enables long-term stable operation below 4 K. Using only a small amount of helium gas, this system totally avoids the liquid helium consumption. The platform is compatible with qPlus AFM, also supports a wide range of optional modules, including superconducting magnets, TERS, THz spectroscopy, NV center measurements, and electrical transport measurements, etc.

Featuring a continuous-flow cryogenic architecture, the UHV variable-temperature scanning probe microscope system can be operated with either liquid helium or liquid nitrogen cooling. The system is compatible with qPlus AFM and supports a wide range of optional modules, including optical, magnetic, electrical measurements, etc. It can also be readily upgraded to a closed-cycle cryogen-free cooling configuration.

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