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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`QuantumFramework`
QuantumChannel
​
QuantumChannel[{
B
1
,
B
2
,…},order,basis]
represents a quantum channel with Kraus operators
B
i
, in
basis
, to be applied onto the qubits indexed in
order
.
​
​
QuantumChannel[name[params],...]
represents a the named quantum channel with
name
, and potential parameters specified by
params
.
​
Details and Options

Examples  
(2)
Basic Examples  
(1)
Define a quantum channel
In[1]:=
ops=Table
QuantumOperator
["RandomUnitary"]Sqrt[4],4;​​channel=
QuantumChannel
[ops]
Out[1]=
QuantumChannel
Order: {1}→{0,1}
Dimension: 2→8

Apply the channel on a random mixed state:
In[2]:=
channel
QuantumState
["RandomMixed"]
Out[2]=
QuantumState
StateType: Matrix
Qudits: 1
Type: Mixed
Dimension: 2
Picture: Schrödinger
​

Scope  
(1)

SeeAlso
QuantumState
 
▪
QuantumBasis
 
▪
QuantumMeasurementOperator
RelatedGuides
▪
Wolfram Quantum Computation Framework
""

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