Source code for mrmustard.lab.states.squeezed_vacuum

# Copyright 2023 Xanadu Quantum Technologies Inc.

# Licensed under the Apache License, Version 2.0 (the "License");
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"""The class representing a squeezed vacuum state."""

from __future__ import annotations

from collections.abc import Sequence

from mrmustard.parameters import Parameter
from mrmustard.physics.ansatz_factory import AnsatzFactory
from mrmustard.physics.wires import ReprEnum, Wires

from .builtins import squeezed_vacuum_state, squeezed_vacuum_state_fock
from .ket import Ket

__all__ = ["SqueezedVacuum"]


[docs] class SqueezedVacuum(Ket): r"""The squeezed vacuum state in Bargmann representation. >>> from mrmustard.lab import SqueezedVacuum, Vacuum, Sgate >>> state = SqueezedVacuum(mode=0, r=0.3, phi=0.2) >>> assert state == Vacuum(0) >> Sgate(0, r=0.3, phi=0.2) Args: mode: The mode of the squeezed vacuum state. r: The squeezing magnitude. phi: The squeezing angle. name: A name for the state. If not provided, the class name will be used. """ short_name = "Sq" def __init__( self, mode: int | tuple[int], r: float | Sequence[float] | Parameter = 0.0, phi: float | Sequence[float] | Parameter = 0.0, name: str | None = None, ): mode = (mode,) if not isinstance(mode, tuple) else mode name = name if name is not None else self.__class__.__name__ super().__init__( ansatz_factory=AnsatzFactory( ansatz_dict={ ReprEnum.BARGMANN: (squeezed_vacuum_state, ("r", "phi", "lin_sup")), ReprEnum.FOCK: (squeezed_vacuum_state_fock, ("r", "phi", "shape", "lin_sup")), } ), wires=Wires(modes_out_ket=set(mode)), name=name, ) self.parameters["r"] = Parameter.from_cc_init(r, "float64", f"{self.name}/r") self.parameters["phi"] = Parameter.from_cc_init(phi, "float64", f"{self.name}/phi")