225 lines
8.7 KiB
Plaintext
225 lines
8.7 KiB
Plaintext
---
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title: FunctionalPauliRotations
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description: API reference for qiskit.circuit.library.FunctionalPauliRotations
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in_page_toc_min_heading_level: 1
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python_api_type: class
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python_api_name: qiskit.circuit.library.FunctionalPauliRotations
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---
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# FunctionalPauliRotations
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<Class id="qiskit.circuit.library.FunctionalPauliRotations" isDedicatedPage={true} github="https://github.com/Qiskit/qiskit/tree/stable/1.2/qiskit/circuit/library/arithmetic/functional_pauli_rotations.py#L22-L114" signature="qiskit.circuit.library.FunctionalPauliRotations(num_state_qubits=None, basis='Y', name='F')" modifiers="class">
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Bases: `BlueprintCircuit`, [`ABC`](https://docs.python.org/3/library/abc.html#abc.ABC "(in Python v3.12)")
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Base class for functional Pauli rotations.
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Create a new functional Pauli rotation circuit.
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**Parameters**
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* **num\_state\_qubits** ([*int*](https://docs.python.org/3/library/functions.html#int "(in Python v3.12)") *| None*) – The number of qubits representing the state $|x\rangle$.
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* **basis** ([*str*](https://docs.python.org/3/library/stdtypes.html#str "(in Python v3.12)")) – The kind of Pauli rotation to use. Must be ‘X’, ‘Y’ or ‘Z’.
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* **name** ([*str*](https://docs.python.org/3/library/stdtypes.html#str "(in Python v3.12)")) – The name of the circuit object.
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## Attributes
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### ancillas
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.ancillas">
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A list of `AncillaQubit`s in the order that they were added. You should not mutate this.
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</Attribute>
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### basis
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.basis">
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The kind of Pauli rotation to be used.
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Set the basis to ‘X’, ‘Y’ or ‘Z’ for controlled-X, -Y, or -Z rotations respectively.
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**Returns**
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The kind of Pauli rotation used in controlled rotation.
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</Attribute>
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### calibrations
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.calibrations">
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Return calibration dictionary.
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The custom pulse definition of a given gate is of the form `{'gate_name': {(qubits, params): schedule}}`
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</Attribute>
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### clbits
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.clbits">
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A list of `Clbit`s in the order that they were added. You should not mutate this.
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</Attribute>
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### data
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.data" />
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### global\_phase
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.global_phase">
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The global phase of the current circuit scope in radians.
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</Attribute>
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### instances
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.instances" attributeValue="170" />
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### layout
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.layout">
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Return any associated layout information about the circuit
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This attribute contains an optional [`TranspileLayout`](qiskit.transpiler.TranspileLayout "qiskit.transpiler.TranspileLayout") object. This is typically set on the output from [`transpile()`](compiler#qiskit.compiler.transpile "qiskit.compiler.transpile") or [`PassManager.run()`](qiskit.transpiler.PassManager#run "qiskit.transpiler.PassManager.run") to retain information about the permutations caused on the input circuit by transpilation.
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There are two types of permutations caused by the [`transpile()`](compiler#qiskit.compiler.transpile "qiskit.compiler.transpile") function, an initial layout which permutes the qubits based on the selected physical qubits on the [`Target`](qiskit.transpiler.Target "qiskit.transpiler.Target"), and a final layout which is an output permutation caused by [`SwapGate`](qiskit.circuit.library.SwapGate "qiskit.circuit.library.SwapGate")s inserted during routing.
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</Attribute>
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### metadata
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.metadata">
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Arbitrary user-defined metadata for the circuit.
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Qiskit will not examine the content of this mapping, but it will pass it through the transpiler and reattach it to the output, so you can track your own metadata.
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</Attribute>
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### num\_ancilla\_qubits
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.num_ancilla_qubits">
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The minimum number of ancilla qubits in the circuit.
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**Returns**
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The minimal number of ancillas required.
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</Attribute>
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### num\_ancillas
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.num_ancillas">
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Return the number of ancilla qubits.
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</Attribute>
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### num\_captured\_vars
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.num_captured_vars">
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The number of real-time classical variables in the circuit marked as captured from an enclosing scope.
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This is the length of the `iter_captured_vars()` iterable. If this is non-zero, [`num_input_vars`](#qiskit.circuit.library.FunctionalPauliRotations.num_input_vars "qiskit.circuit.library.FunctionalPauliRotations.num_input_vars") must be zero.
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</Attribute>
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### num\_clbits
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.num_clbits">
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Return number of classical bits.
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</Attribute>
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### num\_declared\_vars
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.num_declared_vars">
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The number of real-time classical variables in the circuit that are declared by this circuit scope, excluding inputs or captures.
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This is the length of the `iter_declared_vars()` iterable.
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</Attribute>
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### num\_input\_vars
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.num_input_vars">
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The number of real-time classical variables in the circuit marked as circuit inputs.
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This is the length of the `iter_input_vars()` iterable. If this is non-zero, [`num_captured_vars`](#qiskit.circuit.library.FunctionalPauliRotations.num_captured_vars "qiskit.circuit.library.FunctionalPauliRotations.num_captured_vars") must be zero.
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</Attribute>
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### num\_parameters
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.num_parameters" />
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### num\_qubits
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.num_qubits">
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Return number of qubits.
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</Attribute>
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### num\_state\_qubits
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.num_state_qubits">
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The number of state qubits representing the state $|x\rangle$.
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**Returns**
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The number of state qubits.
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</Attribute>
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### num\_vars
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.num_vars">
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The number of real-time classical variables in the circuit.
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This is the length of the `iter_vars()` iterable.
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</Attribute>
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### op\_start\_times
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.op_start_times">
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Return a list of operation start times.
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This attribute is enabled once one of scheduling analysis passes runs on the quantum circuit.
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**Returns**
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List of integers representing instruction start times. The index corresponds to the index of instruction in `QuantumCircuit.data`.
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**Raises**
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[**AttributeError**](https://docs.python.org/3/library/exceptions.html#AttributeError "(in Python v3.12)") – When circuit is not scheduled.
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</Attribute>
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### parameters
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.parameters" />
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### prefix
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.prefix" attributeValue="'circuit'" />
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### qregs
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.qregs" attributeTypeHint="list[QuantumRegister]">
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A list of the `QuantumRegister`s in this circuit. You should not mutate this.
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</Attribute>
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### qubits
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.qubits">
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A list of `Qubit`s in the order that they were added. You should not mutate this.
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</Attribute>
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### name
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.name" attributeTypeHint="str">
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A human-readable name for the circuit.
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</Attribute>
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### cregs
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.cregs" attributeTypeHint="list[ClassicalRegister]">
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A list of the `ClassicalRegister`s in this circuit. You should not mutate this.
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</Attribute>
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### duration
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.duration" attributeTypeHint="int | float | None">
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The total duration of the circuit, set by a scheduling transpiler pass. Its unit is specified by [`unit`](#qiskit.circuit.library.FunctionalPauliRotations.unit "qiskit.circuit.library.FunctionalPauliRotations.unit").
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</Attribute>
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### unit
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<Attribute id="qiskit.circuit.library.FunctionalPauliRotations.unit">
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The unit that [`duration`](#qiskit.circuit.library.FunctionalPauliRotations.duration "qiskit.circuit.library.FunctionalPauliRotations.duration") is specified in.
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</Attribute>
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</Class>
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