• Lene Vestergaard Hau, "Physics for the 21st Century"
Annenberg Foundation Manipulating Light, Unit 7 • Anne Goodsell, Trygve Ristroph,
J. A. Golovchenko, and Lene Vestergaard Hau,
Field ionization of cold atoms near the wall of a single carbon nanotube (2009) •
Naomi S. Ginsberg,
Sean R. Garner, and Lene Vestergaard Hau,
Coherent control of optical information with matter wave dynamics (2007). •
Naomi S. Ginsberg, Joachim Brand, Lene Vestergaard Hau,
Observation of Hybrid Soliton Vortex-Ring Structures in Bose–Einstein Condensates (2005). • Chien Liu,
Zachary Dutton, Cyrus H. Behroozi, Lene Vestergaard Hau,
Observation of coherent optical information storage in an atomic medium using halted light pulses • Lene Vestergaard Hau,
S. E. Harris,
Zachary Dutton, Cyrus H. Behroozi,
Light speed reduction to 17 metres per second in an ultracold atomic gas • Lene Vestergaard Hau,
Quantum Optics: Slowing single photons • Brian Murphy and Lene Vestergaard Hau,
Electro-optical nanotraps for neutral atoms, • Lene Vestergaard Hau,
Optical information processing in Bose–Einstein condensates, • Lene Vestergaard Hau,
Quantum physics – Tangled memories, • Lene Vestergaard Hau,
Nonlinear optics: Shocking superfluids, •
Christopher Slowe, Laurent Vernac, Lene Vestergaard Hau,
A High Flux Source of Cold Rubidium •
Christopher Slowe,
Naomi S. Ginsberg, Trygve Ristroph, Anne Goodsell, and Lene Vestergaard Hau,
Ultraslow Light & Bose–Einstein Condensates:Two-way Control with Coherent Light & Atom Fields •
Marin Soljacic, Elefterios Lidorikis, J. D. Joannopoulos, Lene Vestergaard Hau,
Ultra Low-Power All-Optical Switching • Trygve Ristroph, Anne Goodsell,
J. A. Golovchenko, and Lene Vestergaard Hau,
Detection and quantized conductance of neutral atoms near a charged carbon nanotube •
Zachary Dutton, Lene Vestergaard Hau,
Storing and processing optical information with ultra-slow light in Bose–Einstein condensates •
Zachary Dutton,
Naomi S. Ginsberg,
Christopher Slowe, and Lene Vestergaard Hau,
The Art of Taming Light: Ultra-slow and Stopped Light • Lene Vestergaard Hau,
Frozen Light •
Zachary Dutton, Michael Budde,
Christopher Slowe, Lene Vestergaard Hau,
Observation of quantum shock waves created with ultra-compressed slow light pulses in a Bose–Einstein Condensate • Lene Vestergaard Hau,
Taming Light with Cold Atoms Invited feature article. Published by Institute for Physics, UK. • B. D. Busch, Chien Liu,
Z. Dutton, C. H. Behroozi, L. Vestergaard Hau,
Observation of interaction dynamics in finite-temperature Bose condensed atom clouds • C. Liu, B.D. Busch,
Z. Dutton, and L. V. Hau,
Anisotropic Expansion of Finite Temperature Bose Gases – Emergence of Interaction Effects between Condensed and Non-Condensed Atoms, Proceedings of the conference on New Directions in Atomic Physics, Cambridge, England, July 1998, eds. C. T. Whelan, R.M. Dreizler, J.H. Macek, and H.R.J Walters, (Plenum, 1999). • Lene Hau,
BEC and Light Speeds of 38 miles/hr: Proceedings of the Workshop on Bose–Einstein Condensation and Degenerate Fermi Gases, from Workshop on Bose–Einstein Condensation and Degenerate Fermi Gases Hau's talk: Podcast and image files. • Lene Vestergaard Hau, B. D. Busch, Chien Liu,
Zachary Dutton, Michael M. Burns,
J. A. Golovchenko,
Near Resonant Spatial Images of Confined Bose–Einstein Condensates in the 4-Dee Magnetic Bottle • Lene Vestergaard Hau, B. D. Busch, Chien Liu, Michael M. Burns,
J. A. Golovchenko, ''Cold Atoms and Creation of New States of Matter: Bose–Einstein Condensates, Kapitza States, and '2D Magnetic Hydrogen Atoms'', (Photonic, Electronic and Atomic Collisions : Invited papers of the 20th International Conference of Electronic and Atomic Collisions (ICEAC) Vienna, Austria, July 23–29, 1997) F. Aumayr and H.P. Winter, editors • Lene Vestergaard Hau,
J. A. Golovchenko, and Michael M. Burns,
Supersymmetry and the Binding of a Magnetic Atom to a Filamentary Current • Lene Vestergaard Hau,
J. A. Golovchenko, and Michael M. Burns,
A new atomic beam source: The "candlestick" • Lene Vestergaard Hau, Michael M. Burns, and
J. A. Golovchenko,
Bound states of guided matter waves: An atom and a charged wire • "
Absolute Zero and the Conquest of Cold" • "
Absolute Zero and the Conquest of Cold" Tom Schactman Pub Date: Dec. 1st, 1999 Publisher: Houghton Mifflin ==References==