SNP Atom Glass Cavity

1. Assembly method: the mirror and the chamber use the photoadhesive bonding assembly scheme
2. Coating requirement: wavelength range 420-3000nm, transmittance, incidence angle, loss and other requirements can be customized according to user's needs
3. Vacuum: 1X10-10pa
Note: Can be customized according to user's requirements
Product Description

Precision Engineered for Breakthrough Science

The Atom Glass Cavity is the cornerstone of modern quantum optics and atomic research. Designed for laboratories pushing the boundaries of photonics and quantum computing, these cavities combine ultra-low thermal expansion glass with hermetically sealed vacuum integrity. Whether you’re stabilizing atomic clocks or trapping cold atoms for quantum simulations, our solutions deliver sub-nm surface accuracy and customizable configurations to match your experimental needs.

Parameters

Feature Specification
Assembly method the mirror and the chamber use the photoadhesive bonding assembly scheme
Coating wavelength range 420-3000nm
Vacuum level 1x10-10 Pa
Customization options Available for transmittance, incidence angle, and loss requirements

Note: All parameters can be customized to meet specific user requirements.

product-1-1

Why Choose Our Atom Glass Cavity?

  1. Unmatched Material Stability: Our Atom Glass cavity is meticulously crafted from either Corning® 7972 or Zerodur® glass, renowned for their exceptional thermal and mechanical properties. This superior construction ensures they maintain an astonishing ±0.001mm dimensional stability, even when subjected to extreme temperatures ranging from -200°C to 500°C. Such stability is crucial for applications demanding precision and reliability under harsh conditions.
  2. Nanoscale Precision: We pride ourselves on delivering unparalleled nanoscale precision. Our products achieve a remarkable <0.5 nm RMS surface roughness, coupled with angstrom - level flatness. This minimizes light scattering, enabling high - performance in applications such as advanced optical systems, where minute imperfections can significantly impact functionality and output quality.
  3. Customization Without Compromise: Understanding that each project has unique needs, we offer extensive customization options. Tailor mirror coatings including high - reflectivity (HR), anti - reflective (AR), and diamond - like carbon (DLC) coatings, along with port geometries and vacuum sealing protocols, all precisely to your exact requirements. This allows you to optimize the performance of our products for your specific application.
  4. Rapid Prototyping: With our dedicated engineering team at your service, rapid prototyping becomes a seamless process. From the initial design concept, we can transform it into a fully functional prototype in just 15 days. This accelerated timeline gives you a competitive edge, enabling quicker product development, testing, and time - to - market for your innovative projects.

    product-1-1

Powering Cutting-Edge Research

  1. Quantum Clocks: Our cavities, meticulously engineered for optical lattice clocks, are the key to achieving unparalleled timekeeping precision. By leveraging advanced design principles and high - quality materials, they effectively reduce frequency drift to less than 1 Hz per hour. This level of stability is essential for applications ranging from fundamental physics research to next - generation navigation systems that demand ultra - accurate time measurements.
  2. Cold Atom Traps: For the study of Bose - Einstein condensates, a stable environment is of utmost importance. Our hermetically sealed cold atom traps are designed to provide just that. These traps safeguard the delicate quantum states of cold atoms by minimizing external interference, allowing researchers to explore the fascinating properties of Bose - Einstein condensates with greater accuracy and reliability.
  3. Photonic Integration: Our cavities offer a versatile platform for testing quantum memory modules. They are fully compatible with multiple atomic species including Rubidium (Rb), Cesium (Cs), and Strontium (Sr). This compatibility enables a wide range of experiments in photonic integration, facilitating the development of advanced quantum technologies and bringing us closer to realizing the full potential of quantum computing and communication.

Trusted by Leading Institutions

“Achieved 10-16 clock stability using these cavities—unmatched in our 5-year testing cycle.”– Dr. Elena Voss, Quantum Metrology Lab, ETH Zurich

Global Compliance & Support

  • Certifications: ISO 17025, RoHS, ITAR-free options
  • Shipping: DDP delivery worldwide
  • Lead Time: 8 weeks for standard orders
  • Support: 24/7 technical assistance + lifetime warranty

FAQ

1. How do your Atom Glass cavities maintain vacuum integrity?

Our photoadhesive bonding assembly ensures hermetic sealing, validated via helium leak testing.

2. Can I customize coatings for UV applications?

Yes—we offer AR/HR coatings optimized for 190–3000 nm wavelengths.

3. What’s the lead time for custom geometries?

Prototypes ship in 15 days; bulk orders in 8–10 weeks.

4. Do you support legacy systems?

Our modular designs integrate with most ion-trap or superconducting setups.

5. How do pricing tiers work?

Volume discounts start at 10+ units—request a quote for exact figures.

Ready to Elevate Your Research?

Ready to elevate your quantum optics research or applications with our premium Atom Glass Cavity solutions? Our team of experts is here to assist you. Contact us today at xachaona@163.com to discuss your specific requirements or to request a quote.

Online Message

Learn about our latest products and discounts through SMS or email