Motivated by recent progress in the experimental manipulation of cold atoms in optical lattices, we study three different protocols for non-adiabatic quantum state preparation and state transport in chains of Rydberg atoms. The protocols we discuss are based on the blockade mechanism between atoms which, when excited to a Rydberg state, interact through a van der Waals potential, and rely on single-site addressing. Specifically, we discuss protocols for efficient creation of an antiferromagnetic GHZ state, a class of matrix product states including a so-called Rydberg crystal and for the state transport of a single-qubit quantum state between two ends of a chain of atoms. We identify system parameters allowing for the operation of the proto...
The combination of optical tweezer arrays, which allow trapping of several hundred individual atoms ...
Quantum computation has experienced a steady growth in interest in recent years. With the rapid deve...
Quantum computation has experienced a steady growth in interest in recent years. With the rapid deve...
Motivated by recent progress in the experimental manipulation of cold atoms in optical lattices, we ...
Abstract. Neutral atoms excited to Rydberg states can interact with each other via dipole-dipole int...
<p><strong>Figure 7.</strong> Trapped cold atoms in one- or two-dimensional optical lattice with dif...
<p><strong>Figure 2.</strong> (a) Schematic energy level structure of the atomic qubits. Two ground ...
In any physical platform, two ingredients are essential for quantum information processing: single-q...
Abstract Entangled states are crucial for modern quantum enabled technology which makes their creati...
Applicability of Rydberg atoms to quantum computers is examined from experimental point of view. In ...
We present schemes for geometric phase compensation in an adiabatic passage which can be used for th...
Atoms excited into states of high principal quantum number, Rydberg atoms, have exaggerated properti...
Crystalline structures of highly excited Rydberg atoms can be a model for dilute metallic solids wit...
Atoms excited into states of high principal quantum number, Rydberg atoms, have exaggerated properti...
The main objective of quantum simulation is an in-depth understanding of many-body physics, which is...
The combination of optical tweezer arrays, which allow trapping of several hundred individual atoms ...
Quantum computation has experienced a steady growth in interest in recent years. With the rapid deve...
Quantum computation has experienced a steady growth in interest in recent years. With the rapid deve...
Motivated by recent progress in the experimental manipulation of cold atoms in optical lattices, we ...
Abstract. Neutral atoms excited to Rydberg states can interact with each other via dipole-dipole int...
<p><strong>Figure 7.</strong> Trapped cold atoms in one- or two-dimensional optical lattice with dif...
<p><strong>Figure 2.</strong> (a) Schematic energy level structure of the atomic qubits. Two ground ...
In any physical platform, two ingredients are essential for quantum information processing: single-q...
Abstract Entangled states are crucial for modern quantum enabled technology which makes their creati...
Applicability of Rydberg atoms to quantum computers is examined from experimental point of view. In ...
We present schemes for geometric phase compensation in an adiabatic passage which can be used for th...
Atoms excited into states of high principal quantum number, Rydberg atoms, have exaggerated properti...
Crystalline structures of highly excited Rydberg atoms can be a model for dilute metallic solids wit...
Atoms excited into states of high principal quantum number, Rydberg atoms, have exaggerated properti...
The main objective of quantum simulation is an in-depth understanding of many-body physics, which is...
The combination of optical tweezer arrays, which allow trapping of several hundred individual atoms ...
Quantum computation has experienced a steady growth in interest in recent years. With the rapid deve...
Quantum computation has experienced a steady growth in interest in recent years. With the rapid deve...