Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Sonification of many qubit systems

View through CrossRef
Quantum mechanics poses significant challenges for visual representation, particularly concerning quantum entanglement. In this work, we propose a sonification mapping for dynamical entanglement generation in many-qubit systems, with the help of phase space methods and entanglement measure. We study dynamics of entanglement generation in many-qubit system in dynamical protocol governed by two models: the one-axis twisting model, and a quantum kicked-rotor exhibiting both regular and quantum chaotic behavior. We present a procedure of entanglement dynamics sonification, allowing mapping the phase-space representation of a many-qubit quantum state and von Neuman entanglement entropy to sound. keywords: sonification, quantum entanglement, Quantum physics, quantum music
Society for Artistic Research
Title: Sonification of many qubit systems
Description:
Quantum mechanics poses significant challenges for visual representation, particularly concerning quantum entanglement.
In this work, we propose a sonification mapping for dynamical entanglement generation in many-qubit systems, with the help of phase space methods and entanglement measure.
We study dynamics of entanglement generation in many-qubit system in dynamical protocol governed by two models: the one-axis twisting model, and a quantum kicked-rotor exhibiting both regular and quantum chaotic behavior.
We present a procedure of entanglement dynamics sonification, allowing mapping the phase-space representation of a many-qubit quantum state and von Neuman entanglement entropy to sound.
keywords: sonification, quantum entanglement, Quantum physics, quantum music.

Related Results

Singlet-Triplet and Exchange-Only Flopping-Mode Spin Qubits
Singlet-Triplet and Exchange-Only Flopping-Mode Spin Qubits
Semiconductor-based spin qubits embedded into a superconducting microwave cavity constitute a fast-progressing and promising platform for realizing fast and fault-tolerant qubit co...
DNA Sonification For Public Engagement in Bioinformatics
DNA Sonification For Public Engagement in Bioinformatics
Abstract Objective: Visualisation methods, primarily color-coded representation of sequence data, have been a predominant means of representation of DNA data. Algorithmic c...
Qubit-excitation-based adaptive variational quantum eigensolver
Qubit-excitation-based adaptive variational quantum eigensolver
AbstractMolecular simulations with the variational quantum eigensolver (VQE) are a promising application for emerging noisy intermediate-scale quantum computers. Constructing accur...
The Use of Sonification for the Analysis and Teaching of Interpretive Auditory Nuances
The Use of Sonification for the Analysis and Teaching of Interpretive Auditory Nuances
The integrative powers of human auditory perception in masterful performing artists can create nuances of sound from the interpretation of notes on a written page that often seem b...
Sonification of sound: Auditory display for acoustics education
Sonification of sound: Auditory display for acoustics education
Sonification is concerned with data representation to the ear using nonspeech audio. While auralization is routinely used in architectural acoustics, the broader processes encompas...
Can Sonification Become a Useful Tool for Medical Data Representation?
Can Sonification Become a Useful Tool for Medical Data Representation?
This ‘vision’ paper refers to sonification – a novel method to represent data by sounds. A short theoretical background comprises the main features to...
A CMOS silicon spin qubit
A CMOS silicon spin qubit
AbstractSilicon, the main constituent of microprocessor chips, is emerging as a promising material for the realization of future quantum processors. Leveraging its well-established...
Iterative qubit-excitation based variational quantum eigensolver
Iterative qubit-excitation based variational quantum eigensolver
Abstract Molecular simulations with the variational quantum eigensolver (VQE) are a promising application for emerging noisy intermediate-scale quantum computers. Construct...

Back to Top