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When a quantum state evolves, there are 2^n basis states whose probability amplitudes and phases evolve as well. Quantum states may be represented in a Hilbert space, and their evolution may be modeled by unitary matrices from which 2^n wave patterns may be derived, each having amplitude and frequency.
Unfortunately, nature doesn't permit us to observe, or rather listen to, a quantum state evolving. However, quantum simulators such as those supplied in Qiskit may be employed to model this evolution and compute its wave patterns. These oscillations could be used as a starting point in traditional audio synthesis, so that we may listen to unobservable but fundamental melodies and harmonies baked into the universe and happening all around us.
Mentor/s
James Weaver (@JavaFXpert), Quantum Developer Advocate
Type of participant
Audiophile software developers
Number of participants
2-3
Deliverable
Audio demos and article/paper
The text was updated successfully, but these errors were encountered:
@sierpinskiii Can you comment on this issue so that I can assign you? Please also work with your mentor to refine the project, define scope and deliverables and update the project description in this issue.
Description
When a quantum state evolves, there are 2^n basis states whose probability amplitudes and phases evolve as well. Quantum states may be represented in a Hilbert space, and their evolution may be modeled by unitary matrices from which 2^n wave patterns may be derived, each having amplitude and frequency.
Unfortunately, nature doesn't permit us to observe, or rather listen to, a quantum state evolving. However, quantum simulators such as those supplied in Qiskit may be employed to model this evolution and compute its wave patterns. These oscillations could be used as a starting point in traditional audio synthesis, so that we may listen to unobservable but fundamental melodies and harmonies baked into the universe and happening all around us.
Mentor/s
James Weaver (@JavaFXpert), Quantum Developer Advocate
Type of participant
Audiophile software developers
Number of participants
2-3
Deliverable
Audio demos and article/paper
The text was updated successfully, but these errors were encountered: