We present and analyze a protocol for driven-dissipatively preparing and stabilizing a manifold of quantum manybody entangled states with symmetry-protected topological order. Specifically, we consider the experimental platform consisting of superconducting transmon circuits and linear microwave resonators. We perform theoretical modeling of this platform via pulse-level simulations based on physical features of real devices. In our protocol, transmon qutrits are mapped onto spin-1 systems. The qutrits' sharing of nearest-neighbor dispersive coupling to a dissipative microwave resonator enables elimination of state population in the $S^\mathrm{total}=2$ subspace for each adjacent pair, and thus, the stabilization of the manybody system in...
We analyse the implementation of a fast nonadiabatic CZ gate between two transmon qubits with tuneab...
Engineered dynamical maps combining coherent and dissipative transformations of quantum states with ...
Original article can be found at: http://pra.aps.org/ Copyright American Physical Society. DOI: 10.1...
We present and analyze a protocol for driven-dissipatively preparing and stabilizing a manifold of q...
International audienceWe present and analyze a protocol for driven-dissipatively preparing and stabi...
Quantum reservoir engineering is a powerful framework for autonomous quantum state preparation and e...
Topological properties of quantum systems are one of the most intriguing emerging phenomena in conde...
Precisely engineered mechanical oscillators keep time, filter signals, and sense motion, making them...
Controllable quantum many-body systems are platforms for fundamental investigations into the nature ...
We propose a novel superconducting logical qubit architecture, called the Cold Echo Qubit (CEQ), whi...
Dissipative state engineering is a general term for a protocol which prepares the ground state of a ...
Despite the many proposals to use dissipation as a resource to prepare long-lived entangled states, ...
Superconducting quantum circuits provide a promising avenue for scalable quantum computation and sim...
Qubits built out of Majorana zero modes (MZMs) constitute the primary path towards topologically pro...
Quantum battery (QB) is the miniature energy storage and release device and plays a crucial role in ...
We analyse the implementation of a fast nonadiabatic CZ gate between two transmon qubits with tuneab...
Engineered dynamical maps combining coherent and dissipative transformations of quantum states with ...
Original article can be found at: http://pra.aps.org/ Copyright American Physical Society. DOI: 10.1...
We present and analyze a protocol for driven-dissipatively preparing and stabilizing a manifold of q...
International audienceWe present and analyze a protocol for driven-dissipatively preparing and stabi...
Quantum reservoir engineering is a powerful framework for autonomous quantum state preparation and e...
Topological properties of quantum systems are one of the most intriguing emerging phenomena in conde...
Precisely engineered mechanical oscillators keep time, filter signals, and sense motion, making them...
Controllable quantum many-body systems are platforms for fundamental investigations into the nature ...
We propose a novel superconducting logical qubit architecture, called the Cold Echo Qubit (CEQ), whi...
Dissipative state engineering is a general term for a protocol which prepares the ground state of a ...
Despite the many proposals to use dissipation as a resource to prepare long-lived entangled states, ...
Superconducting quantum circuits provide a promising avenue for scalable quantum computation and sim...
Qubits built out of Majorana zero modes (MZMs) constitute the primary path towards topologically pro...
Quantum battery (QB) is the miniature energy storage and release device and plays a crucial role in ...
We analyse the implementation of a fast nonadiabatic CZ gate between two transmon qubits with tuneab...
Engineered dynamical maps combining coherent and dissipative transformations of quantum states with ...
Original article can be found at: http://pra.aps.org/ Copyright American Physical Society. DOI: 10.1...