One quantum world.
Six ways in.
A qubit can live in a circuit, an atom, light, or a collective state. Explore what changes when the hardware changes.
Interactive experiments
Source-backed physics · Three audience levels
Superconducting qubits
Compare square, heavy-hex and chiplet connectivity, then operate an ideal qubit or a neighboring pair.
ENTER THE LABTrapped-ion
Compare a stationary ion chain with QCCD transport, create an ideal entangled pair, and inspect two-ion axial modes.
ENTER THE LABNeutral atoms
Compare optical-tweezer geometries, then isolate two atoms to see Rydberg blockade emerge from their quantum dynamics.
ENTER THE LABPhotonic quantum
Control a path-encoded photon, reveal its phase, and compare distinguishable and indistinguishable photon pairs.
ENTER THE LABSilicon spin
Control one electron spin, couple a neighboring pair, and compare linear and square quantum-dot layouts.
ENTER THE LABTopological qubits
Exchange Fibonacci anyons. Follow their worldlines and the quantum state encoded in their collective fusion channel.
ENTER THE LAB