Quantum technologies exploiting bipartite entanglement could be made more efficient by using states having the minimum amount of energy for a given entanglement degree. Here, we study how to generate these states in the case of a bipartite system of arbitrary finite dimension either by applying a unitary transformation to its ground state or through a zero-temperature thermalization protocol based on turning on and off a suitable interaction term between the subsystems. In particular, we explicitly identify three possible unitary operators and five possible interaction terms. On the one hand, two of the three unitary transformations turn out to be easily decomposable in terms of local elementary operations and a single non-local one, making...
While recent breakthroughs in quantum computing promise the nascence of the quantum information age,...
We present a general sufficiency condition for the presence of multipartite entanglement in thermal...
We establish a rigorous connection between fundamental resource theories at the quantum scale. Corre...
Quantum technologies exploiting bipartite entanglement could be made more efficient by using states ...
Quantum technologies exploiting bipartite entanglement could be made more efficient by using states ...
We find the minimum and the maximum value for the local energy of an arbitrary finite bipartite syst...
An interesting class of physical systems, including those associated with life, demonstrates the abi...
A model of a thermal spin state entering a beam splitter generating entanglement was presented. A me...
We investigate the fundamental limitations imposed by thermodynamics for creating correlations. Cons...
Correlation functions and entanglement are two different aspects to characterize quantum many-body s...
Purification is a tool that allows to represent mixed quantum states as pure states on enlarged Hilb...
This paper establishes single-letter formulas for the exact entanglement cost of generating bipartit...
We propose a scheme to dissipatively produce steady-state entanglement in a two-qubit system, via an...
We present a quantum algorithm for the microcanonical thermal pure quantum (TPQ) method, which has a...
Quantum technologies require pure states, which are often generated by extreme refrigeration. Heat-b...
While recent breakthroughs in quantum computing promise the nascence of the quantum information age,...
We present a general sufficiency condition for the presence of multipartite entanglement in thermal...
We establish a rigorous connection between fundamental resource theories at the quantum scale. Corre...
Quantum technologies exploiting bipartite entanglement could be made more efficient by using states ...
Quantum technologies exploiting bipartite entanglement could be made more efficient by using states ...
We find the minimum and the maximum value for the local energy of an arbitrary finite bipartite syst...
An interesting class of physical systems, including those associated with life, demonstrates the abi...
A model of a thermal spin state entering a beam splitter generating entanglement was presented. A me...
We investigate the fundamental limitations imposed by thermodynamics for creating correlations. Cons...
Correlation functions and entanglement are two different aspects to characterize quantum many-body s...
Purification is a tool that allows to represent mixed quantum states as pure states on enlarged Hilb...
This paper establishes single-letter formulas for the exact entanglement cost of generating bipartit...
We propose a scheme to dissipatively produce steady-state entanglement in a two-qubit system, via an...
We present a quantum algorithm for the microcanonical thermal pure quantum (TPQ) method, which has a...
Quantum technologies require pure states, which are often generated by extreme refrigeration. Heat-b...
While recent breakthroughs in quantum computing promise the nascence of the quantum information age,...
We present a general sufficiency condition for the presence of multipartite entanglement in thermal...
We establish a rigorous connection between fundamental resource theories at the quantum scale. Corre...