Published November 2011 | Version v1
Journal article

Trapping of a supersonic beam in a traveling magnetic wave

  • 1. Université Paris-Sud, Laboratoire Aimé Cotton, CNRS Bât. 505 (France)

Description

Here we report on a new approach to the magnetic deceleration of supersonic beams, based on the generation of a propagating wave of magnetic field. Atoms and molecules possessing a magnetic dipole moment, in so-called low field seeking quantum states, are trapped around a node of the propagating wave. The wave travels at a desired velocity in the direction of the supersonic beam, which can be chosen to match a velocity class populated in the beam. An additional quadrupole guide provides transverse confinement, independently of the decelerator itself. Our technique has been conceived to generate a smooth motion of the magnetic wave, which should optimize the efficiency of the trapping during a future Zeeman deceleration of the beam. We demonstrate the trapping of metastable argon atoms in a magnetic wave traveling at selected, constant velocities.

Additional details

Identifiers

Publishing Information

Journal Title
European Physical Journal. D, Atomic, Molecular and Optical Physics
Journal Volume
65
Journal Issue
1-2
Journal Page Range
p. 263-271
ISSN
1434-6060

INIS

Country of Publication
France
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
51078139
Subject category
S74: ATOMIC AND MOLECULAR PHYSICS;
Descriptors DEI
ARGON; ATOMS; BEAMS; CONFINEMENT; MAGNETIC DIPOLE MOMENTS; MAGNETIC FIELDS; MOLECULES; QUADRUPOLES; QUANTUM STATES; TRAPPING; WAVE PROPAGATION; ZEEMAN EFFECT
Descriptors DEC
DIPOLE MOMENTS; ELEMENTS; FLUIDS; GASES; MAGNETIC MOMENTS; MULTIPOLES; NONMETALS; RARE GASES

Optional Information

Copyright
Copyright (c) 2011 EDP Sciences, SIF, Springer-Verlag Berlin Heidelberg