Centennial Nobel
Quantum Optics Virtual Simulation Experimental System
Combining advanced virtual reality technology with quantum optical theory, the Quantum Optics Virtual Simulation Experimental System offers a comprehensive, interactive, and personalized learning toolkit. The system realistically simulates physical laboratory environments—including optical components, light sources, and detectors—helping students gain deep insights into critical quantum optics concepts and techniques. Covering a wide range of core experimental modules such as quantum interference, quantum entanglement, quantum state transmission, and photonic quantum computing, this platform is tailored for undergraduate and graduate quantum physics courses to deliver an immersive hands-on experience.

Experimental Content
01 Basic Optical Path Setup
02 Quantum Entangled State Preparation Experiment
03 Bell Inequality Verification Experiment
04 Single-Photon Interference Experiment
05 Two-Photon Interference Experiment
06 Quantum Teleportation Experiment
07 Controlled-NOT (CNOT) Gate Experiment
08 Deutsch-Jozsa Algorithm Experiment

Experimental Content
01 Basic Optical Path Setup
02 Quantum Entangled State Preparation Experiment
03 Bell Inequality Verification Experiment
04 Single-Photon Interference Experiment
05 Two-Photon Interference Experiment
06 Quantum Teleportation Experiment
07 Controlled-NOT (CNOT) Gate Experiment
08 Deutsch-Jozsa Algorithm Experiment

Specifications
JZQES-SIMS-01
| Parameter | Specification |
| Pump Light Wavelength | 405 nm |
| Pump Light Output Power | ≥50 mW |
| Coincidence Channels | 2 |
| Coincidence Window Width | 12 ns |
| Detection Efficiency @ 810 nm | ≥65% |
| Detector Dark Count | 100~500 cps |
| Dead Time | <100 ns |
| Maximum Count Rate | ~10 MHz |
Specifications
JZQES-SIMS-01
| Parameter | Specification |
| Pump Light Wavelength | 405 nm |
| Pump Light Output Power | ≥50 mW |
| Coincidence Channels | 2 |
| Coincidence Window Width | 12 ns |
| Detection Efficiency @ 810 nm | ≥65% |
| Detector Dark Count | 100~500 cps |
| Dead Time | <100 ns |
| Maximum Count Rate | ~10 MHz |
Educational Scenarios
Educational Scenarios