ICEoxford
ICEoxford engineers cryogenic sample environments for quantum experiments. The offering covers photonic-circuit cooling and detector operation as well as ultra-high-vacuum environments for ion-trap and cold-atom research.
United Kingdom · Research reviewed 11 Sept 2026Initial record: initial assessment recorded.
Review history 1 record
Record dates show when an assessment or clarification was saved. Review dates show the evidence check. Earlier records were recovered from QubitWire’s source history; no earlier score movement is inferred.
Initial assessment recorded
Assessment reviewed 11 Sept 2026 · Research reviewed 11 Sept 2026Sources in this record (2)
What it does. Where it fits.
Closed-cycle helium cryostats with configurable thermal stages, optical access, wiring and magnetic fields.
Who should look closer
Teams whose cryostat needs optical access, substantial experimental heat removal or customized geometry.
QubitWire’s editorial assessment of practical fit.Cryostats and custom engineering
Select documented systems and discuss configuration, service and delivery through direct enquiry.
Check the current access route ↗What has been demonstrated
The Bristol case describes a continuous-flow 1 K platform built for quantum photonics. The separate 3K ION product specifies an ion-trap environment and integration options.
What remains unresolved
The Bristol account is supplier-written. Cooling figures describe particular configurations, and added wiring or optical heat loads can change achievable temperature.
The next question to watch
Publish externally reported quantum-system uptime and cooling performance with complete experimental loads.
A research question, not a promised milestone.QubitWire coverage
No published QubitWire stories currently match this organization. The evidence sources below provide the starting point.
Sources & evidence
- DRY ICE 3K ION ↗Organization-originated source · Publication date not stated
Supplier documents 3–300 K operation, 2 W at 4.2 K, optical and wiring ports, a Lake Shore 336 controller and direct product enquiry.
- Bristol University DRY ICE 1K case study ↗Organization-originated source · Publication date not stated
ICEoxford describes a delivered Bristol cryostat with 230 mW at 1 K and sample-space design for single-photon detectors and complete optical quantum circuits.
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