|0⟩
|1⟩

IQOD

QUANTUM STATES

We create games that exist in superposition. Like quantum systems that can be in multiple states simultaneously, our games offer parallel possibilities. We build experiences that entangle player choices, collapse into realities, and reveal probabilities with every interaction.

MEASURE STATE

Quantum Properties

Our design principles

Superposition

Multiple states existing simultaneously. Game mechanics that maintain parallel possibilities until player observation forces a decision.

🌀

Entanglement

Deeply connected systems. Game elements that remain correlated regardless of distance, creating emergent connections.

📈

Probability

Weighted outcomes rather than certainty. Systems that present likelihoods rather than guarantees, creating tension and surprise.

Quantum Cycle

Our formation process

Ψ

Initialize

+

Superpose

Entangle

Collapse

Quantum Archive

Our superposition creations

|ψ⟩ = α|0⟩ + β|1⟩
|α|² = 0.7
Quantum Heist
A puzzle game about quantum-safe locks. Use superposition to be in multiple places at once, entangle with security systems, and collapse wave functions to solve security challenges.
|Φ⁺⟩ = (|00⟩ + |11⟩)/√2
|β|² = 0.5
Entangled Realities
A narrative adventure where player choices create parallel timelines. Navigate multiple superimposed endings, with each decision entangling future possibilities.
H|0⟩ = |+⟩
p = 1/√2
Gate Designer
A programming puzzle game about quantum circuits. Design quantum algorithms, apply gates, and observe probabilistic outcomes in a simulated quantum computer.
|Ψ⁻⟩ = (|01⟩ - |10⟩)/√2
Corr = -1
Bell Test
A multiplayer game about quantum communication. Coordinate with a partner using entangled particles, testing Bell's inequality and quantum non-locality.

Quantum Computer

Ready to compute? Initialize a qubit.