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QuantumFramework

Tutorials

  • Getting Started

Guides

  • Wolfram Quantum Computation Framework

Tech Notes

  • Bell's Theorem
  • Circuit Diagram
  • Exploring Fundamentals of Quantum Theory
  • Quantum object abstraction
  • Quantum Optimization
  • Second Quantization Functions
  • Tensor Network
  • Quantum Computation

Symbols

  • QuantumBasis
  • QuantumChannel
  • QuantumCircuitMultiwayGraph [EXPERIMENTAL]
  • QuantumCircuitOperator
  • QuantumDistance
  • QuantumEntangledQ
  • QuantumEntanglementMonotone
  • QuantumEvolve
  • QuantumMeasurement
  • QuantumMeasurementOperator
  • QuantumMeasurementSimulation
  • QuantumMPS [EXPERIMENTAL]
  • QuantumOperator
  • QuantumPartialTrace
  • QuantumPhaseSpaceTransform
  • QuantumShortcut [EXPERIMENTAL]
  • QuantumStateEstimate [EXPERIMENTAL]
  • QuantumState
  • QuantumTensorProduct
  • QuantumWignerMICTransform [EXPERIMENTAL]
  • QuantumWignerTransform [EXPERIMENTAL]
  • QuditBasis
  • QuditName
Wolfram Quantum Computation Framework
The Wolfram Quantum Framework offers a novel and convenient approach to quantum computing research with Wolfram Notebooks. It provides a comprehensive set of modeling capabilities for simulating quantum computation, with full integration into Mathematica and Wolfram Language, and also interoperability with many external quantum platforms. Within Wolfram quantum framework, there exists a diverse collection of quantum objects, that fully describe quantum entities, such as quantum basis, state, operations, and processes. These objects can undergo transformations through some operations (for example, quantum state into a quantum measurement, by a measurement operator). Furthermore, their properties can be calculated using other functions (for example, quantum entanglement monotones for a quantum state). Computations can be done either symbolically, or numerically.
Basic Objects
QuditName
— representation of a qudit name with formatting
QuditBasis
— representation of a qudit basis
QuantumBasis
— representation of a quantum basis
QuantumState
— representation of a quantum state
QuantumOperator
— representation of a quantum operator
QuantumMeasurementOperator
— representation of a quantum measurement operator
QuantumMeasurement
— representation of quantum measurement
Quantum Circuits
QuantumChannel
— representation of a quantum channel to describe noise
QuantumCircuitOperator
— representation of a quantum circuit
QuantumCircuitMultiwayGraph
— multiway graph of a quantum circuit
QuantumShortcut
— shorthand representation of operators or circuits
Quantum Functions
QuantumDistance
— distance between quantum states
QuantumEvolve
— time evolution
QuantumMeasurementSimulation
— simulating one or many measurement results, given a quantum state
QuantumMPS
— returns the MPS or MPO of a state or operator/circuit
QuantumPartialTrace
— partial trace of a quantum state, operator or circuit with respect to subsystems
QuantumPartialTranspose
— partial transpose of a quantum state or quantum operator with respect to subsystems
QuantumStateEstimate
— estimating quantum state based on measurement results
QuantumTensorProduct
— tensor product of quantum states, quantum bases, quantum operators, or quantum measurements
QuantumWignerTransform
— discrete Wigner transform of a quantum state, operator or circuit
Entanglement
QuantumEntangledQ
— determination of whether a part of quantum state is entangled with another part
QuantumEntanglementMonotone
— measure entanglement of a quantum state
TechNotes
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Tutorial
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