HomeQuantum PhysicsMicrowave-to-Optical Quantum Transduction (2D)

Microwave-to-Optical Quantum Transduction (2D)

Interactive 2D simulator of a microwave-to-optical quantum transducer: tune electromechanical and optomechanical cooperativities on a shared phonon mode, watch impedance-matched conversion efficiency in a flowing photon-stream schematic, and drag on the live efficiency heatmap to explore the C_e/C_o parameter space directly.

Quantum Physics2DAdvanced60 FPS📱 Mobile-adapted⇄ 3D version
2d-qe-topic-55 ↗ Open standalone

A quantum computing "ecosystem" spans superconducting chips (GHz microwave qubits) and fiber-optic quantum networks (THz optical photons) — two hardware platforms that cannot talk to each other directly. This 2D simulator renders the electro-optomechanical transducer that bridges them: a shared phonon mode couples to a microwave port with cooperativity Ce and to an optical port with cooperativity Co. Adjust both cooperativities and each port's external coupling efficiency to see the impedance-matching condition (Ce = Co) drive the conversion efficiency toward unity, while unmatched or lossy settings scatter incoming microwave photons into the mechanical bath instead of converting them. A live heatmap panel lets you drag directly on the (C_e, C_o) parameter space to see the impedance-match ridge.

⚙ Under the hood

Interactive 2D simulator of a microwave-to-optical quantum transducer: tune electromechanical and optomechanical cooperativities on a shared phonon mode, watch impedance-matched conversion efficiency in a flowing photon-stream schematic, and drag on the live efficiency heatmap to explore the C_e/C_o parameter space directly.

quantum networkoptomechanicsmicrowave photonicsquantum internettransduction

2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install

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