RZGate#
- class qiskit.circuit.library.RZGate(phi, label=None)[Quellcode]#
Bases:
Gate
Single-qubit rotation about the Z axis.
This is a diagonal gate. It can be implemented virtually in hardware via framechanges (i.e. at zero error and duration).
Can be applied to a
QuantumCircuit
with therz()
method.Circuit symbol:
┌───────┐ q_0: ┤ Rz(λ) ├ └───────┘
Matrix Representation:
\[\begin{split}RZ(\lambda) = \exp\left(-i\frac{\lambda}{2}Z\right) = \begin{pmatrix} e^{-i\frac{\lambda}{2}} & 0 \\ 0 & e^{i\frac{\lambda}{2}} \end{pmatrix}\end{split}\]Siehe auch
U1Gate
This gate is equivalent to U1 up to a phase factor.\[U1(\lambda) = e^{i{\lambda}/2}RZ(\lambda)\]Reference for virtual Z gate implementation: 1612.00858
Create new RZ gate.
Attributes
- condition_bits#
Get Clbits in condition.
- decompositions#
Get the decompositions of the instruction from the SessionEquivalenceLibrary.
- definition#
Return definition in terms of other basic gates.
- duration#
Get the duration.
- label#
Return instruction label
- name#
Return the name.
- num_clbits#
Return the number of clbits.
- num_qubits#
Return the number of qubits.
- params#
return instruction params.
- unit#
Get the time unit of duration.
Methods
- control(num_ctrl_qubits=1, label=None, ctrl_state=None)[Quellcode]#
Return a (multi-)controlled-RZ gate.
- Parameter:
- Rückgabe:
controlled version of this gate.
- Rückgabetyp:
- inverse()[Quellcode]#
Return inverted RZ gate
\(RZ(\lambda)^{\dagger} = RZ(-\lambda)\)
- power(exponent)[Quellcode]#
Raise gate to a power.