We present techniques to construct the Deutsch-Hayden representation for quantum field operators and apply them to an entangled state of identical nonrelativistic spin-1/2 fermions localized in well-separated spatial regions. Using these entangled field operators we construct operators measuring spin in localized spatial regions, and verify that matrix elements of the spin-measurement operators in the information-free Deutsch-Hayden state yield the expected correlations between pairs of both entangled and unentangled particles. The entangled Deutsch-Hayden-representation field operators furnish an explicitly separable description of the entangled system.Comment: 29 pages, no figures. Typos corrected, minor changes in wording, conclusions ...
In this brief paper, we argue about the relationship between quantum entanglement and non-...
In this brief paper, we argue about the relationship between quantum entanglement and non-...
This article explores the concurrence, including entanglement, in a two-qubit Heisenberg XXX chain w...
A prerequisite for the comprehensive understanding of many-body quantum systems is a characterizatio...
The unique entanglement measure is concurrence in a 2-qubit pure state. The maximum violation of Bel...
We consider a general quantum field relativistic scattering involving two half spin fermions, $A$ an...
In this brief paper, we argue about the relationship between quantum entanglement and non-...
In this brief paper, we argue about the relationship between quantum entanglement and non-...
In this brief paper, we argue about the relationship between quantum entanglement and non-...
In this brief paper, we argue about the relationship between quantum entanglement and non-...
In this brief paper, we argue about the relationship between quantum entanglement and non-...
Quantum entanglement of identical particles is essential in quantum information theory. Yet, its cor...
The many-body entanglement between two finite (size-$d$) disjoint vacuum regions of non-interacting ...
Despite its ubiquity in quantum computation and quantum information, a universally applicable defini...
Quantum entanglement is a key issue to a proper understanding of quantum physics and beyond, as well...
In this brief paper, we argue about the relationship between quantum entanglement and non-...
In this brief paper, we argue about the relationship between quantum entanglement and non-...
This article explores the concurrence, including entanglement, in a two-qubit Heisenberg XXX chain w...
A prerequisite for the comprehensive understanding of many-body quantum systems is a characterizatio...
The unique entanglement measure is concurrence in a 2-qubit pure state. The maximum violation of Bel...
We consider a general quantum field relativistic scattering involving two half spin fermions, $A$ an...
In this brief paper, we argue about the relationship between quantum entanglement and non-...
In this brief paper, we argue about the relationship between quantum entanglement and non-...
In this brief paper, we argue about the relationship between quantum entanglement and non-...
In this brief paper, we argue about the relationship between quantum entanglement and non-...
In this brief paper, we argue about the relationship between quantum entanglement and non-...
Quantum entanglement of identical particles is essential in quantum information theory. Yet, its cor...
The many-body entanglement between two finite (size-$d$) disjoint vacuum regions of non-interacting ...
Despite its ubiquity in quantum computation and quantum information, a universally applicable defini...
Quantum entanglement is a key issue to a proper understanding of quantum physics and beyond, as well...
In this brief paper, we argue about the relationship between quantum entanglement and non-...
In this brief paper, we argue about the relationship between quantum entanglement and non-...
This article explores the concurrence, including entanglement, in a two-qubit Heisenberg XXX chain w...