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The phrase "a quantum transformation" is correct and usable in written English.
It can be used in contexts related to physics, mathematics, or discussions about significant changes in systems or processes at a quantum level.
Example: "The researchers observed a quantum transformation in the particles during the experiment, leading to unexpected results."
Alternatives: "a quantum shift" or "a quantum change".
Exact(1)
Based on cavity quantum electrodynamics (QED), we investigate the light-matterinteraction between surface plasmon polaritons (SPP) in a metal nanoparticle (MNP and the excitons in semiconductor quantum dots (SQDs) in an SQD-MNP coupled system.We propose a quantum transformation method to strongly reveal the exciton energyshift and the modified decay rate of SQD as well as the coupling among SQDs.
Similar(59)
In conclusion, we have clearly demonstrated the interaction of SQDs and SPP field in MNPvia a novel quantum transformation.
Since we are now proposing to regard the CNOT gate as a device for processing quantum states, the evolution from input states to output states must be effected by a physical quantum transformation.
It was a quantum shift.
In this paper, the quantum theory is introduced for proposing a quantum Hadamard transformation based denosing algorithm (QHTDA) used for mechanical vibration signal under fault condition.
The quantum transformation is used to treat master equation ofthe entire system.
Under the description we develop anovel quantum transformation method that is suitable for the coupling SQDs to SPP fieldwith large decay rate.
Quantum transformations are linear on the linear state space of qubits.
In the main text, we stated that if a quantum simulation model has a symmetry transformation that relates (H_{k}) and (H_{j}), then frac{partial p_{m}({{lambda }})}{partial lambda_{k}} = frac{partial p_{m}({{lambda }})}{partiallambda_{j}},quad mbox{for all } m. (16) This has consequences for the rank of the FIM for the model.
Finally, we point out that Ref. [37] provides an exact, analytical methodology for the preparation of arbitrary states of a quantum walker through only passive linear-optics transformation.
This is presented in the context of classically controlled quantum computation where a classical program controls a sequence of quantum operations, i.e. unitary transformations and measurements acting on a quantum memory.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com