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System for extending quantum coherence time using vacuum pressure
[Category : - Computers and computer accessories ]
[Viewed 81 times]
AbstractrnA novel system and method are disclosed for significantly extending quantum coherence time by utilizing engineered vacuum pressure cavitation in conjunction with a frequency-based time dilation field. This invention provides a new mechanism for stabilizing qubits by reducing decoherence-inducing interactions at the quantum level through controlled resonance of vacuum pressure gradients and micro-cavitational nodes. The invention integrates a vacuum field modulation system, graphene-based qubit arrays, and cryogenic control layers to create a localized “slow-time” environment. This allows for extended coherence durations far beyond existing superconducting or trapped ion systems, unlocking new performance levels in quantum computation.rnrnKey Innovationsrn? Vacuum Pressure Cavitation:rnUses nanostructured resonant cavities to generate cavitation zones where vacuum pressure is modulated to minimize environmental noise and energy fluctuation around the qubit.rnrn? Frequency-Based Time Dilation:rnEmploys a mathematical function rn????rn(rn????rn,rn????rn)rn=rn????rn????rn????rn????rn????rn????rn????rn????rn?rn????rn/rn????rn1rnf(r,t)=f rnPlanckrn?rn e rn?r/r rn1rn?rn rn to induce localized time-slowing effects via decaying frequency fields, effectively increasing qubit stability duration from the perspective of external time.rnrn? Hybrid Qubit Architecture:rnSupports both superconducting and graphene-doped photonic qubits, synchronized with a vacuum-modulated resonance core to maintain state coherence under extreme conditions.rnrn? Field-Resonant Envelope Stabilization:rnA technique to surround the qubit environment with coherent standing waveforms tuned to natural vacuum fluctuation frequencies, thereby reducing entropy transfer and decoherence probability.
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