中文
相关论文

相关论文: Observation of Rydberg blockade between two atoms

200 篇论文

Two ultracold atom clouds, each separately in a dipole-blockade regime, realize a source of entangled atom pairs that can be ejected on demand. Entanglement generation and ejection is due to resonant dipole-dipole interactions, while…

原子物理 · 物理学 2015-06-17 S. Wüster , S. Möbius , M. Genkin , A. Eisfeld , J. M. Rost

Recent theoretical studies with alkali atoms A$^{\ast}$ excited to high Rydberg states predicted the existence of ultra long-range molecular bound states. Such excited dimers have large electric dipole moments which, in combination with…

原子物理 · 物理学 2009-11-13 Chris H. Greene , Edward L. Hamilton , Heather Crowell , Cedomil Vadla , Kay Niemax

Calculations of the static electric-dipole scalar and tensor polarizabilities are presented for two alkali atoms, Rb and Cs, for the $nS$, $nP_{1/2, 3/2}$, and $nD_{3/2, 5/2}$ states with large principal quantum numbers up to $n = 50$. The…

原子物理 · 物理学 2016-09-21 V. A. Yerokhin , S. Y. Buhmann , S. Fritzsche , A. Surzhykov

We consider three level atoms driven by two resonant light fields in a ladder scheme where the upper level is a highly excited Rydberg state. We show that the dipole--dipole interactions between Rydberg excited atoms prevents the formation…

量子物理 · 物理学 2012-01-30 J. D. Pritchard , C. S. Adams , K. Mølmer

The interaction between atoms and a quantized radiation field is fundamentally important in quantum optics and quantum information science. Due to their unusual properties, Rydberg atoms are promising building blocks for two-qubit gates and…

量子物理 · 物理学 2026-01-06 Francisco D. Santillan , Andreas Hanke

We discuss a candidate solution for the controlled trapping and manipulation of two individual Rydberg atoms by means of a magnetic Ioffe-Pritchard trap that is superimposed by a constant electric field. In such a trap Rydberg atoms…

原子物理 · 物理学 2011-12-13 Bernd Hezel , Michael Mayle , Peter Schmelcher

When ground state atoms are excited to a Rydberg state, van der Waals interactions among them can lead to a strong suppression of the excitation. Despite the strong interactions the evolution can still be reversed by a simple phase shift in…

量子物理 · 物理学 2011-11-10 Ulrich Raitzsch , Vera Bendkowsky , Rolf Heidemann , Björn Butscher , Robert Löw , Tilman Pfau

We present a combined experimental and theoretical study of the effects of Rydberg interactions on Autler-Townes spectra of ultracold gases of atomic strontium. Realizing two-photon Rydberg excitation via a long-lived triplet state allows…

We investigate the long-range, two-body interactions between rubidium and potassium atoms in highly excited ($n=70$) Rydberg states. After establishing properly symmetrized asymptotic basis states, we diagonalize an interaction Hamiltonian…

原子物理 · 物理学 2023-05-09 Nolan Samboy

Cold collisions between two Rydberg rubidium atoms ($^{87}$Rb) are investigated by controlling the impact parameter and collision energy. Optical tweezers are employed to hold one atom stationary while propelling the other to a constant…

原子物理 · 物理学 2024-12-10 Hansub Hwang , Sunhwa Hwang , Jaewook Ahn , Shuhei Yoshida , Joachim Burgdorfer

Van der Waals interactions are interactions between dipoles. Similarly, quadrupole-quadrupole interactions are interactions between quadrupoles. In this article, we focus on the interactions between two dipoles or two quadrupoles.…

原子与分子团簇 · 物理学 2022-07-18 Jianing Han , Juliet Michell , Morgan Umstead

We show that the interaction between Rydberg atomic states can provide continuous spin squeezing of atoms with two ground states. The interaction prevents the simultaneous excitation of more than a single atom in the sample to the Rydberg…

量子物理 · 物理学 2007-05-23 Isabelle Bouchoule , Klaus Moelmer

Recent developments in the study of ultracold Rydberg gases demand an advanced level of experimental sophistication, in which high atomic and optical densities must be combined with excellent control of external fields and sensitive Rydberg…

We have investigated formation of structures of Rydberg atoms excited from a disordered gas of ultracold atoms, using rate equations for two-photon Rydberg excitation in a single atom without eliminating the intermediate state. We have…

We present a technique for state-selective position detection of cold Rydberg atoms. Ground state Rb atoms in a magneto-optical trap are excited to a Rydberg state and are subsequently ionized with a tailored electric field pulse. This…

Highly excited atoms with an electron moved into a level with large principal quantum number are fascinating hydrogen-like objects. The giant extension of these Rydberg atoms leads to huge interaction effects. Monitoring these interactions…

介观与纳米尺度物理 · 物理学 2014-11-13 Tomasz Kazimierczuk , Dietmar Fröhlich , Stefan Scheel , Heinrich Stolz , Manfred Bayer

We show that Rydberg states in an ultra-cold gas can be excited with strongly preferred nearest-neighbor distance if densities are well below saturation. The scheme makes use of an echo sequence in which the first half of a laser pulse…

原子物理 · 物理学 2012-01-04 S. Wuster , J. Stanojevic , C. Ates , T. Pohl , P. Deuar , J. F. Corney , J. M. Rost

Hyperentanglement~(HE), the simultaneous entanglement between two particles in more than one degrees of freedom, is relevant to both fundamental physics and quantum technology. Previous study on HE has been focusing on photons. Here, we…

量子物理 · 物理学 2022-12-14 Xiao-Feng Shi

We demonstrate Rabi flopping of small numbers of $\rm{^{87}Rb}$ atoms between ground and Rydberg states with $n\le 43$. Coherent population oscillations are observed for single atom flopping, while the presence of two or more atoms…

量子物理 · 物理学 2012-07-20 T. A. Johnson , E. Urban , T. Henage , L. Isenhower , D. D. Yavuz , T. G. Walker , M. Saffman

A quantum-feedback-based scheme is proposed for generating multipartite entanglements of Rydberg atoms in a dissipative optical cavity. The Rydberg blockade mechanism efficiently prevents double excitations of the system, which is further…

量子物理 · 物理学 2017-02-15 X. Q. Shao , J. H. WU , X. X. Yi