Quantum Computing Hardware
The electrical, RF, optical, cryogenic, packaging and classical-control infrastructure required to operate and scale multiple qubit modalities.

Keep the focus on engineering hardware rather than quantum-algorithm hype: qubit devices, control/readout, cryogenic load, interconnect, packaging, synchronization and classical feedback.
Architecture is stable; technology maturity is not assumed. Public claims are anchored to current authoritative sources and are separated from Aurora concept work.
Technical coverage
Six focused routes keep device physics, interfaces, packaging, controls and verification separable.

Qubit Modalities
Superconducting, trapped-ion, photonic, neutral-atom and semiconductor-spin hardware.
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Control & Readout Electronics
Pulse generation, low-noise readout, state discrimination and feedback.
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Cryogenic RF Chain
Attenuation, amplification, filters, thermalization and microwave routing.
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Optical Control & Photonics
Laser control, modulators, detectors and optical distribution for relevant modalities.
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Quantum Packaging & Interconnect
Dense wiring, flex, connectors, shielding, thermal anchoring and module scaling.
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Classical Control & Error Support
Synchronization, decoding/control hardware and hybrid classical/quantum operation.
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Keep the focus on engineering hardware rather than quantum-algorithm hype: qubit devices, control/readout, cryogenic load, interconnect, packaging, synchronization and classical feedback.