We develop an effective scheme for implementing error-insensitive population transfer in a three-level system (qutrit) by invariant-based shortcuts with optimized drivings. Based on the method of inverse engineering, target population transfers can be performed in a shortcut manner. Taking into account the deviation errors and then optimizing the coherent drivings, we can improve the target population transfers to be insensitive to deviations of frequency detuning or Rabi coupling. Particularly, with an appropriate choice of coherent drivings, our scheme could be insensitive to these two kinds of errors simultaneously. As one of the potential applications, our scheme may remove the control errors of quantum operations on superconducting art...
The advance of experimental techniques in circuit quantum electrodynamics over last decadehas made i...
In this work we put forward the inclusion of error mitigation routines in the process of training Va...
Quantum error correcting codes have been developed to protect a quantum computer from decoherence du...
High-fidelity qubit initialization is of significance for efficient error correction in fault tolera...
19 p.We examine the stability versus different types of perturbations of recently proposed shortcuts...
We design, by invariant-based inverse engineering, driving fields that invert the population of a tw...
A key milestone on the path towards building a quantum computer will be the demonstration of an algo...
© 2020 IOP Publishing Ltd. Quantum error correction (QEC) codes are usually designed to correct erro...
Ultrastrong coupling may allow faster operations for the development of quantum technologies at the ...
Quantum control methods, like rapid adiabatic passage, stimulated Raman adiabatic passage, shortcuts...
Ultrastrong coupling may allow faster operations for the development of quantum technologies at the ...
UnrestrictedTwo subjects in the area of quantum computation are considered here. In the first chapte...
In the present work, we explore possible routes to the future exploitation of quantum technologies i...
We determine how to optimally reset a superconducting qubit which interacts with a thermal environme...
High-fidelity quantum computation and quantum state transfer are possible in short spin chains. We e...
The advance of experimental techniques in circuit quantum electrodynamics over last decadehas made i...
In this work we put forward the inclusion of error mitigation routines in the process of training Va...
Quantum error correcting codes have been developed to protect a quantum computer from decoherence du...
High-fidelity qubit initialization is of significance for efficient error correction in fault tolera...
19 p.We examine the stability versus different types of perturbations of recently proposed shortcuts...
We design, by invariant-based inverse engineering, driving fields that invert the population of a tw...
A key milestone on the path towards building a quantum computer will be the demonstration of an algo...
© 2020 IOP Publishing Ltd. Quantum error correction (QEC) codes are usually designed to correct erro...
Ultrastrong coupling may allow faster operations for the development of quantum technologies at the ...
Quantum control methods, like rapid adiabatic passage, stimulated Raman adiabatic passage, shortcuts...
Ultrastrong coupling may allow faster operations for the development of quantum technologies at the ...
UnrestrictedTwo subjects in the area of quantum computation are considered here. In the first chapte...
In the present work, we explore possible routes to the future exploitation of quantum technologies i...
We determine how to optimally reset a superconducting qubit which interacts with a thermal environme...
High-fidelity quantum computation and quantum state transfer are possible in short spin chains. We e...
The advance of experimental techniques in circuit quantum electrodynamics over last decadehas made i...
In this work we put forward the inclusion of error mitigation routines in the process of training Va...
Quantum error correcting codes have been developed to protect a quantum computer from decoherence du...