High-NA Imaging Cells
Product Features
- Optically matched to readily available microscope objectives at 0.3, 0.5, and 0.7 NA.
- Face parallelism: <1 arcminute.
- Anti-reflection coating on inside and outside surfaces of all cell walls (uncoated options available).
- Bakeable to high temperatures.
- Configurations:
- BEC Vacuum Cell
- Optical Tweezers Cell
Coating Options
- Broadband Coating: 460 nm to 1070 nm.
- Targeted AR Coating: Cesium (Cs), Potassium (K), Rubidium (Rb).
Flange Options
- DN16 CF Flange
- DN40 CF Flange: Wide-neck glass-to-metal connections.
Infleqtion’s high-quality glass cells offer exceptional optical access for in-vacuum experiments. Assembled with an optical contacting process, the cells maintain high flatness, minimal optical distortion, and excellent ultrahigh vacuum (UHV) compatibility.
2 cm AR-Coated Cells
Product Features
- Ultrahigh vacuum (UHV) compatible.
- Anti-reflection coated on inside and outside surfaces of all cell walls.
- Bakeable to high temperatures.
- Assembled without epoxies or frits.
- Configurations:
- BEC Vacuum Cell
- Magneto-Optical Trap Vacuum Cell
Coating Options
- Broadband Coating
- Targeted AR Coating: Cesium (Cs), Potassium (K), Rubidium (Rb).
- Custom Coating available upon request.
Flange Options
- DN16 CF Flange
- DN40 CF Flange: Wide-neck glass-to-metal connections.
These AR-coated glass cells provide exceptional optical access and high-quality assembly for UHV compatibility, with no epoxy or frits used in construction.
2 cm Thin-Walled Cells
Product Features
- Ultrahigh vacuum (UHV) compatible.
- Bakeable to high temperatures.
- Thin glass walls for lightweight design.
- Assembled without epoxies or frits.
Thin-walled cells provide excellent optical access at an economical price. Connected to DN16 or DN40 flanges using proprietary assembly processes, they are robust against high bakeout temperatures with minimal outgassing.
Cold Atom Source Cells (CASC)
Product Features
- Dual alkali metal sources for advanced applications.
- 2D+ MOT capability.
- Pinhole design for differential pressure maintenance.
- Assembled without epoxies or frits.
- Equipped with DN16 CF Flange.
Elements Supported
- Rubidium (Rb)
- Cesium (Cs)
The CASC forms the core of high-flux atom delivery systems, achieving fluxes of several billion atoms per second with rubidium or cesium. It uses differential pumping via a silicon plate aperture, maintaining isolation from higher-pressure MOT operations.