Technical Papers
Discover a selection of research papers highlighting the versatility and impact of our cryogenic systems in groundbreaking work across various scientific disciplines and temperature ranges. Explore these publications to see how our solutions are a key component in innovative research.
1.5K Systems
1K Systems
| Year | System Type | Institution | Paper Name | Journal | Research |
| 2024 | 1K | Imperial College London |
Slow molecular beams from a cryogenic buffer gas source |
Physical Review | Slow Molecular Beams |
| 2022 | 1K High Cooling Power | MIT | Electrical Control of Surface Acoustic Waves | Nature Electronics | Quantum Communications |
| 2022 | 1K | Princeton | Exotic Thermal Transport in a Kitaev Magnet | PHD | Transport Measurements |
| 2020 | 1K High Cooling Power | MIT | Reduced Indium Tin Oxide as a Transparent Superconductor | PHD | Superconducting Materials |
| 2019 | 1K Dipper | Cambridge | Quantum critical phenomena in a compressible displacive ferroelectric | Proceedings of the National Academy of Sciences US | Quantum Phenomena |
| 2018 | 1K Dipper | Cambridge | Dielectric Response of Quantum Critical Ferroelectric as a Function of Pressure | Scientific Reports | Quantum Phenomena |
3K Systems
DRY Dilution
| Year | System Type | Institution | Paper Name | Journal | Research |
| 2016 | DRY Dilution | KTH-Royal Institute of Technology | Magnesium Diboride (MgB2) & Molybdenum Silicide (MoSi) Superconducting Nanowires | WP | Superconducting Nanowires |
HE3 Systems
| Year | System Type | Institution | Paper Name | Journal | Research |
| 2018 | He3 Probe | Cambridge University | High-Pressure Quantum Oscillation Study of BiTeI and Bi2Te3 | PHD | Quantum Phenomena |








