We theoretically investigated the implementation of universal quantum gates in hyperfine levels of ultracold heteronuclear polar molecules in their lowest rotational manifolds. Quantum bits are manipulated by microwave pulses, taking advantage of the strong state mixing generated by the hyperfine interactions. Gate operations are either driven by a sequence of Gaussian pulses or by a pulse shaped by optimal control theory. Alkaline molecules of experimental interest are considered. We show that high fidelity gates can be driven by microsecond pulses. The richness of the energy structure and the state mixing offer promising perspectives for the manipulation of a large numb...
Control over physical systems at the quantum level is a goal shared by scientists in fields as diver...
Enhanced coherence in HoW10 molecular spin qubits has been demonstrated by use of clock-transitions ...
We propose a design for a quantum-information processor where qubits are encoded into hyperfine stat...
We numerically investigate the implementation of small quantum algorithms, an arithmetic adder and t...
We demonstrate coherent microwave control of rotational and hyperfine states of trapped, ultracold, ...
Using optimal control, we implement simple quantum algorithms using hyperfine states of ultracold po...
We demonstrate, numerically, the possibility of manipulating the spin states of molecular nanomagnet...
Polar molecules are an emerging platform for quantum technologies based on their long-range electric...
We explore coherent multi-photon processes in 87Rb133Cs molecules using 3-level lambda and ladder co...
We show that an array of polar molecules interacting with Rydberg atoms is a promising hybrid system...
We demonstrate, numerically, the possibility of manipulating the spin states of molecular nanomagnet...
Large-scale quantum computing will likely employ distributed network architectures in which photons,...
Ultracold molecules trapped in optical tweezers show great promise for the implementation of quantum...
A switchable interaction between pairs of highly coherent qubits is a crucial ingredient for the phy...
Ultracold molecules are expected to find applications in cold chemistry, quantum phases, precision m...
Control over physical systems at the quantum level is a goal shared by scientists in fields as diver...
Enhanced coherence in HoW10 molecular spin qubits has been demonstrated by use of clock-transitions ...
We propose a design for a quantum-information processor where qubits are encoded into hyperfine stat...
We numerically investigate the implementation of small quantum algorithms, an arithmetic adder and t...
We demonstrate coherent microwave control of rotational and hyperfine states of trapped, ultracold, ...
Using optimal control, we implement simple quantum algorithms using hyperfine states of ultracold po...
We demonstrate, numerically, the possibility of manipulating the spin states of molecular nanomagnet...
Polar molecules are an emerging platform for quantum technologies based on their long-range electric...
We explore coherent multi-photon processes in 87Rb133Cs molecules using 3-level lambda and ladder co...
We show that an array of polar molecules interacting with Rydberg atoms is a promising hybrid system...
We demonstrate, numerically, the possibility of manipulating the spin states of molecular nanomagnet...
Large-scale quantum computing will likely employ distributed network architectures in which photons,...
Ultracold molecules trapped in optical tweezers show great promise for the implementation of quantum...
A switchable interaction between pairs of highly coherent qubits is a crucial ingredient for the phy...
Ultracold molecules are expected to find applications in cold chemistry, quantum phases, precision m...
Control over physical systems at the quantum level is a goal shared by scientists in fields as diver...
Enhanced coherence in HoW10 molecular spin qubits has been demonstrated by use of clock-transitions ...
We propose a design for a quantum-information processor where qubits are encoded into hyperfine stat...