Skip to main content
Home
Department Of Physics text logo
  • Research
    • Our research
    • Our research groups
    • Our research in action
    • Research funding support
    • Summer internships for undergraduates
  • Study
    • Undergraduates
    • Postgraduates
  • Engage
    • For alumni
    • For business
    • For schools
    • For the public
  • Support
Menu
Atomic and Laser Physics
Credit: Jack Hobhouse

Professor Ian Walmsley CBE FRS FCGI

Director, Oxford Quantum Institute

Sub department

  • Atomic and Laser Physics
Ian.Walmsley@physics.ox.ac.uk
Telephone: 01865 772209
  • About
  • Publications

Extending electron orbital precession to the molecular case: Use of orbital alignment for observation of wavepacket dynamics

Physical Review A - Atomic, Molecular, and Optical Physics 83:4 (2011)

Authors:

HEL Martay, DG England, DJ McCabe, IA Walmsley

Abstract:

The complexity of ultrafast molecular photoionization presents an obstacle to the modeling of pump-probe experiments. Here, a simple optimized model of atomic rubidium is combined with a molecular dynamics model to predict quantitatively the results of a pump-probe experiment in which long-range rubidium dimers are first excited, then ionized after a variable delay. The method is illustrated by the outline of two proposed feasible experiments and the calculation of their outcomes. Both of these proposals use Feshbach Rb872 molecules. We show that long-range molecular pump-probe experiments should observe spin-orbit precession given a suitable pump pulse, and that the associated high-frequency beat signal in the ionization probability decays after a few tens of picoseconds. If the molecule was to be excited to only a single fine-structure state, then a low-frequency oscillation in the internuclear separation would be detectable through the time-dependent ionization cross section, giving a mechanism that would enable observation of coherent vibrational motion in this molecule. © 2011 American Physical Society.
More details from the publisher
More details

High-performance single-photon generation with commercial-grade optical fiber

Physical Review A - Atomic, Molecular, and Optical Physics 83:3 (2011)

Authors:

C Söller, O Cohen, BJ Smith, IA Walmsley, C Silberhorn

Abstract:

High-quality quantum sources are of paramount importance for the implementation of quantum technologies. We present here a heralded single-photon source based on commercial-grade polarization-maintaining optical fiber. The heralded photons exhibit a purity of at least 0.84 and an unprecedented heralding efficiency into a single-mode fiber of 85%. The birefringent phase-matching condition of the underlying four-wave mixing process can be controlled mechanically to optimize the wavelength tuning needed for interfacing multiple sources, as is required for large-scale entanglement generation. © 2011 American Physical Society.
More details from the publisher
More details

Engineering Nonlinear Optic Sources of Photonic Entanglement

PROGRESS IN OPTICS, VOL 56 56 (2011) 227-331

Authors:

Juan P Torres, K Banaszek, IA Walmsley
More details from the publisher

Femtosecond to attosecond light pulses from a molecular modulator

NATURE PHOTONICS 5:11 (2011) 665-672

Authors:

S Baker, IA Walmsley, JWG Tisch, JP Marangos
More details from the publisher

Space-time coupling of shaped ultrafast ultraviolet pulses from an acousto-optic programmable dispersive filter

JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS 28:1 (2011) 58-64

Authors:

David J McCabe, Dane R Austin, Ayhan Tajalli, Sebastien Weber, Ian A Walmsley, Beatrice Chatel
More details from the publisher

Pagination

  • First page First
  • Previous page Prev
  • …
  • Page 23
  • Page 24
  • Page 25
  • Page 26
  • Current page 27
  • Page 28
  • Page 29
  • Page 30
  • Page 31
  • …
  • Next page Next
  • Last page Last

Footer Menu

  • Contact us
  • Giving to the Dept of Physics
  • Work with us
  • Media

User account menu

  • Log in

Follow us

FIND US

Clarendon Laboratory,

Parks Road,

Oxford,

OX1 3PU

CONTACT US

Tel: +44(0)1865272200

University of Oxfrod logo Department Of Physics text logo
IOP Juno Champion logo Athena Swan Silver Award logo

© University of Oxford - Department of Physics

Cookies | Privacy policy | Accessibility statement

Built by: Versantus

  • Home
  • Research
  • Study
  • Engage
  • Our people
  • News & Comment
  • Events
  • Our facilities & services
  • About us
  • Giving to Physics
  • Current students
  • Staff intranet