We propose a protocol that achieves fast adiabatic transfer between two orthogonal states of a qubit by coupling with an ancilla. The qubit undergoes Landau-Zener dynamics, whereas the coupling realizes a time-dependent Hamiltonian, which is diagonal in the spin's instantaneous Landau-Zener eigenstates. The ancilla (or meter), in turn, couples to a thermal bath, such that the overall dynamics is incoherent. We analyse the protocol's fidelity as a function of the strength of the coupling and of the relaxation rate of the meter. When the meter's decay rate is the largest frequency scale of the dynamics, the spin dynamics is encompassed by a master equation describing dephasing of the spin in the instantaneous eigenbasis. In this regime the fi...
Adiabatic protocols are employed across a variety of quantum technologies, from implementing state p...
We introduce an algorithm to perform an optimal adiabatic evolution that operates without an apriori...
A non-Hermitian shortcut to adiabaticity is introduced. By adding an imaginary term in the diagonal ...
We propose a protocol that achieves fast adiabatic transfer between two orthogonal states of a qubit...
We introduce a method to speed up adiabatic protocols for creating entanglement between two qubits d...
We present a general method for studying coupled qubits driven by adiabatically changing external pa...
Population-transfer schemes are commonly used to convert information robustly stored in some quantum...
Achieving effectively adiabatic dynamics in finite time is a ubiquitous goal in virtually ...
Adiabatic theorem of quantum mechanics was used by E. Farhi, J. Goldstone, S. Gutmann and M. Sipser ...
A universal scheme is introduced to speed up the dynamics of a driven open quantum system along a pr...
The use of the nuclear spins surrounding electron spin qubits as quantum registers and long-lived me...
For adiabatic controls of quantum systems, the non-adiabatic transitions are reduced by increasing t...
Adiabatic evolution is required in performing quantum information processing tasks and adiabatic spe...
Quantum information processing requires fast manipulations of quantum systems in order to overcome d...
Shortcuts to adiabaticity (STA) are fast routes to the final results of slow, adiabatic changes of t...
Adiabatic protocols are employed across a variety of quantum technologies, from implementing state p...
We introduce an algorithm to perform an optimal adiabatic evolution that operates without an apriori...
A non-Hermitian shortcut to adiabaticity is introduced. By adding an imaginary term in the diagonal ...
We propose a protocol that achieves fast adiabatic transfer between two orthogonal states of a qubit...
We introduce a method to speed up adiabatic protocols for creating entanglement between two qubits d...
We present a general method for studying coupled qubits driven by adiabatically changing external pa...
Population-transfer schemes are commonly used to convert information robustly stored in some quantum...
Achieving effectively adiabatic dynamics in finite time is a ubiquitous goal in virtually ...
Adiabatic theorem of quantum mechanics was used by E. Farhi, J. Goldstone, S. Gutmann and M. Sipser ...
A universal scheme is introduced to speed up the dynamics of a driven open quantum system along a pr...
The use of the nuclear spins surrounding electron spin qubits as quantum registers and long-lived me...
For adiabatic controls of quantum systems, the non-adiabatic transitions are reduced by increasing t...
Adiabatic evolution is required in performing quantum information processing tasks and adiabatic spe...
Quantum information processing requires fast manipulations of quantum systems in order to overcome d...
Shortcuts to adiabaticity (STA) are fast routes to the final results of slow, adiabatic changes of t...
Adiabatic protocols are employed across a variety of quantum technologies, from implementing state p...
We introduce an algorithm to perform an optimal adiabatic evolution that operates without an apriori...
A non-Hermitian shortcut to adiabaticity is introduced. By adding an imaginary term in the diagonal ...