Source code for mrmustard.lab.states.displaced_squeezed
# Copyright 2023 Xanadu Quantum Technologies Inc.
# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at
# http://www.apache.org/licenses/LICENSE-2.0
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
# See the License for the specific language governing permissions and
# limitations under the License.
"""The class representing a displaced squeezed 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 displaced_squeezed_vacuum_state
from .ket import Ket
__all__ = ["DisplacedSqueezed"]
[docs]
class DisplacedSqueezed(Ket):
r"""The displaced squeezed state in Bargmann representation.
>>> from mrmustard.lab import DisplacedSqueezed, Vacuum, Sgate, Dgate
>>> state = DisplacedSqueezed(mode=0, alpha=1, r=0.2, phi=0.3)
>>> assert state == Vacuum(0) >> Sgate(0, r=0.2, phi=0.3) >> Dgate(0, alpha=1)
Args:
mode: The mode of the displaced squeezed state.
alpha: The complex displacement.
r: The squeezing magnitude.
phi: The squeezing angle.
name: A name for the state. If not provided, the class name will be used.
Returns:
A ``Ket``.
"""
short_name = "DSq"
def __init__(
self,
mode: int | tuple[int],
alpha: complex | Sequence[complex] | Parameter = 0.0j,
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: (
displaced_squeezed_vacuum_state,
("alpha", "r", "phi", "lin_sup"),
)
}
),
wires=Wires(modes_out_ket=set(mode)),
name=name,
)
self.parameters["alpha"] = Parameter.from_cc_init(alpha, "complex128", f"{self.name}/alpha")
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")
_modules/mrmustard/lab/states/displaced_squeezed
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