On readout of vibrational qubits using quantum beats.

@article{Shyshlov2014OnRO,
  title={On readout of vibrational qubits using quantum beats.},
  author={Dmytro Shyshlov and Eduardo Berr{\'i}os and Martin Gruebele and Dmitri Babikov},
  journal={The Journal of chemical physics},
  year={2014},
  volume={141 22},
  pages={
          224306
        }
}
Readout of the final states of qubits is a crucial step towards implementing quantum computation in experiment. Although not scalable to large numbers of qubits per molecule, computational studies show that molecular vibrations could provide a significant (factor 2-5 in the literature) increase in the number of qubits compared to two-level systems. In this theoretical work, we explore the process of readout from vibrational qubits in thiophosgene molecule, SCCl2, using quantum beat oscillations… 
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References

SHOWING 1-10 OF 61 REFERENCES
The role of phases and their interplay in molecular vibrational quantum computing with multiple qubits
Within the scope of molecular quantum computing with vibrational qubits, we analyse the impact of phases that are present during the quantum computation processes. While the phase relation in
Accuracy of gates in a quantum computer based on vibrational eigenstates.
  • D. Babikov
  • Physics
    The Journal of chemical physics
  • 2004
TLDR
It is shown that when all these parameters are carefully chosen the accuracy of quantum gates reaches 99.9%.
High fidelity quantum gates with vibrational qubits.
TLDR
This work tests what fidelity can be accomplished for a CNOT gate executed by a shaped ultrafast laser pulse interacting with vibrational states of the molecule SCCl(2), a test system for low-fidelity calculations before.
Mechanisms of local and global molecular quantum gates and their implementation prospects.
We explore how the globality of quantum logic operations is ensured in the context of optimal control theory when qubits are encoded in vibrational eigenstates of different normal modes and specially
Vibrational molecular quantum computing: basis set independence and theoretical realization of the Deutsch-Jozsa algorithm.
TLDR
This paper investigates the phase evolution of global molecular quantum gates, which are realized by optimally shaped femtosecond laser pulses, and realizes the Deutsch-Jozsa algorithm in the two qubit molecular model system, demonstrating the good performance of the phase corrected and basis set independent quantum gates.
Complexity and simplicity of optimal control theory pulses shaped for controlling vibrational qubits.
TLDR
It is concluded that a very limited number of frequency components (only 32 in the model of thiophosgene) are really necessary for accurate control of the vibrational two-qubit system, and such pulses can be readily constructed using OCT.
Feasibility of encoding Shor's algorithm into the motional states of an ion in the anharmonic trap.
We demonstrate theoretically that it may be possible to encode states of a multi-qubit system into the progression of quantized motional∕vibrational levels of an ion trapped in a weakly anharmonic
Implementation of quantum gate operations in molecules with weak laser fields.
TLDR
A way to perform quantum computations by combining an ensemble of molecular states and weak laser pulses is numerically proposed, achieved with extremely high precision.
Quantum computation with vibrationally excited polyatomic molecules: effects of rotation, level structure, and field gradients
Accurate rotation–vibration energy levels and transition dipoles of the molecule thiophosgene are used to model the execution of quantum gates with shaped laser pulses. Qubits are encoded in 2 n
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