Finnish Quantum Computing Art Project

Finnish Quantum Computing Art Project At the intersection of art, technology and physics

Experimenting with ternary quantum computing can get you some pretty beautiful results! Here we simulated wavepacket usi...
13/04/2026

Experimenting with ternary quantum computing can get you some pretty beautiful results! Here we simulated wavepacket using 3 qutrits. By applying RZ gates at varying rates we can create these wonderful interference patterns.

Check out our latest art piece! Generated using quantum computing this art piece shows how phase and quantum superpositi...
19/01/2026

Check out our latest art piece!

Generated using quantum computing this art piece shows how phase and quantum superposition affects the outcome of a quantum system.

Quantum superposition is a quantum mechanical effect where a particle can be in a mixture of two states at the same time. On a quantum computer this means that a qubit (quantum bit) can be in a mixture of 1 and 0. However once measured the qubits state will collapse to either a 1 or 0.

Each colored segment was generated using a 15-qubit quantum circuit on an IBM quantum computer.

Each segment was put in to a quantum superposition of states by applying a Hadamard gate to the qubits. Then a phase rotation is applied which effects how biased the outcome will be between 1 or 0. Then another Hadamard gate is applied to bring the qubit out of superposition. The qubit is then measured and a 3D mesh generated using the measurements.

The red segment was generated with all qubits put in to a full quantum superposition of states by applying Hadamard gates. Then a phase rotation of π/2 was applied. This means all potential values have an equal probability of being measured. As such the segment has more equally distributed points.

The yellow segment was generated with all qubits put in to a superposition of states. Then a phase rotation of pi/4 was applied. This means that the qubit is more biased towards 0 and as such when measured the points are not as equally distributed.

Instead we see an amazing interference pattern!

The green segment and blue segments have a rotation of π/8 and π/16 respectively and as such are more biased towards 0.

14/01/2026

Our latest art piece! This time with a musical twist.

This was generated on a quantum computer with encoded samples from a recording of Johann Sebastian Bach's Air on the G string.

14/01/2026

This video shows how quantum superposition affects the state space of a system. In this animation a mesh is generated using a 15-qubit quantum circuit.

As quantum superposition is increased so does the potential number of measured values.

05/01/2026

With quantum computing we are exploring the intersection of art and quantum computing

05/01/2026

Introducing our first art piece: Wavefunction in Red

Created using an IBM quantum device.

Each segment is generated using a 15-qubit quantum circuit consisting of Hadamard and U3 gates. Each circuit is ran 2000 times. Once obtained a 3D mesh is then generated using the results.

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