Full Connectivity
Two-qubit gate operations can be implemented between any two ion qubits within the ion trap system.
High Fidelity
Quantum operations feature high precision with minimal errors, requiring low overhead for subsequent quantum error correction and laying a solid foundation for reliable quantum computation.
High Scalability
The addition of qubits has no impact on fundamental gate operations or their fidelity, and the QCCD ion trap architecture exhibits excellent scalability.


Long press the "Hold to Heat" button on the right. Keep the thermometer in the green safe zone. When vapor density hits 100%, dormant ytterbium atom sprites awaken into vapor and fly into the stage!

Seize the timing, click the screen or press "Fire Ionization Pulse"! The laser acts like a magic wand, precisely stripping off the atom’s outer electron. It gains a positive charge and transforms into ytterbium ion — the raw material for ion-trap quantum bits!

Charged ions are darting around! Drag the sliders for frequency, amplitude and phase on the panel. When chaotic electric waves turn into smooth sine waves, the invisible "saddle electric field trap" locks on successfully, and the little ions line up neatly in a row!

The ions are lined up, yet trembling from high temperature. Activate the "Infinite Scanning" mode to fire! Dense photon bullets are shot from cooling lasers head-on. Radiation pressure slams the overheated ions to a halt.

This is a test of speed! When the dial pointer sweeps across the green target zone, quickly click "Sync Annihilate Phonons"! Remove the vibrational springs beneath them until the cooling progress reaches 100%!

All ions must be aligned before computation. Wait for the pale blue light band to sweep by, then press "Execute Global Reset" promptly! Optical pumping acts like a gentle little broom, herding electrons in wrong states back into the pure initial |0⟩ state!

The quantum magic show begins! Select a single ion and press the X Gate button. A precise laser beam hits the ion, rotating its state pointer by 180° to achieve a perfect state flip!

Select the ion and press the H Gate button! The magical microwave stops the state pointer on the equator. Watch! The ion enters the magic of "quantum superposition", existing as both 0 and 1 at the same time!

Select two ions simultaneously and press the M-S Gate button! Resonant laser activates the invisible "Coulomb force spring linkage" between them and triggers collective resonance. The two ions instantly become connected, bound together in quantum entanglement!

Alert! Environmental noise monsters are launching a surprise attack, attempting to disrupt the fragile quantum phase. Slide the joystick to rotate the electromagnetic shielding shield. Block all disturbances within the survival countdown and defend the fidelity!

The final step: data readout! Click the "Collect Data" button. Bright states collapse to 1, dim states collapse to 0. Microscopic quantum superposition collapses into macroscopic data charts readable to humans!

Full-link control successfully completed! Your highest honor — the "Quantum Specialist Technical License" — is officially awarded. Congratulations, great quantum engineer, you have cleared all stages perfectly!
Empowering Computing with Unity, Creating the Future with Quantum Technology
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