locking a molecular bond: a case study of csiiv21 0.5 1.25 2.5 x (a.u.) 3.75 5.0 1200 900 600 time...

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Page 1: Locking a molecular bond: A case study of CsIIV21 0.5 1.25 2.5 x (a.u.) 3.75 5.0 1200 900 600 time (fs) 300 FIG. I. Evolution of the "cleaned" wave function on BO surface 2. Evolution

General rights Copyright and moral rights for the publications made accessible in the public portal are retained by the authors and/or other copyright owners and it is a condition of accessing publications that users recognise and abide by the legal requirements associated with these rights.

Users may download and print one copy of any publication from the public portal for the purpose of private study or research.

You may not further distribute the material or use it for any profit-making activity or commercial gain

You may freely distribute the URL identifying the publication in the public portal If you believe that this document breaches copyright please contact us providing details, and we will remove access to the work immediately and investigate your claim.

Downloaded from orbit.dtu.dk on: Aug 14, 2021

Locking a molecular bond: A case study of CsI

Szakács, Tamás; Amstrup, Bjarne; Gross, Peter; Kosloff, Ronnie; Rabitz, Herschel; Lörincz, András

Published in:Physical Review A

Link to article, DOI:10.1103/PhysRevA.50.2540

Publication date:1994

Document VersionPublisher's PDF, also known as Version of record

Link back to DTU Orbit

Citation (APA):Szakács, T., Amstrup, B., Gross, P., Kosloff, R., Rabitz, H., & Lörincz, A. (1994). Locking a molecular bond: Acase study of CsI. Physical Review A, 50(3), 2540-2547. https://doi.org/10.1103/PhysRevA.50.2540

Page 2: Locking a molecular bond: A case study of CsIIV21 0.5 1.25 2.5 x (a.u.) 3.75 5.0 1200 900 600 time (fs) 300 FIG. I. Evolution of the "cleaned" wave function on BO surface 2. Evolution
Page 3: Locking a molecular bond: A case study of CsIIV21 0.5 1.25 2.5 x (a.u.) 3.75 5.0 1200 900 600 time (fs) 300 FIG. I. Evolution of the "cleaned" wave function on BO surface 2. Evolution
Page 4: Locking a molecular bond: A case study of CsIIV21 0.5 1.25 2.5 x (a.u.) 3.75 5.0 1200 900 600 time (fs) 300 FIG. I. Evolution of the "cleaned" wave function on BO surface 2. Evolution
Page 5: Locking a molecular bond: A case study of CsIIV21 0.5 1.25 2.5 x (a.u.) 3.75 5.0 1200 900 600 time (fs) 300 FIG. I. Evolution of the "cleaned" wave function on BO surface 2. Evolution
Page 6: Locking a molecular bond: A case study of CsIIV21 0.5 1.25 2.5 x (a.u.) 3.75 5.0 1200 900 600 time (fs) 300 FIG. I. Evolution of the "cleaned" wave function on BO surface 2. Evolution
Page 7: Locking a molecular bond: A case study of CsIIV21 0.5 1.25 2.5 x (a.u.) 3.75 5.0 1200 900 600 time (fs) 300 FIG. I. Evolution of the "cleaned" wave function on BO surface 2. Evolution
Page 8: Locking a molecular bond: A case study of CsIIV21 0.5 1.25 2.5 x (a.u.) 3.75 5.0 1200 900 600 time (fs) 300 FIG. I. Evolution of the "cleaned" wave function on BO surface 2. Evolution
Page 9: Locking a molecular bond: A case study of CsIIV21 0.5 1.25 2.5 x (a.u.) 3.75 5.0 1200 900 600 time (fs) 300 FIG. I. Evolution of the "cleaned" wave function on BO surface 2. Evolution
Page 10: Locking a molecular bond: A case study of CsIIV21 0.5 1.25 2.5 x (a.u.) 3.75 5.0 1200 900 600 time (fs) 300 FIG. I. Evolution of the "cleaned" wave function on BO surface 2. Evolution
Page 11: Locking a molecular bond: A case study of CsIIV21 0.5 1.25 2.5 x (a.u.) 3.75 5.0 1200 900 600 time (fs) 300 FIG. I. Evolution of the "cleaned" wave function on BO surface 2. Evolution
Page 12: Locking a molecular bond: A case study of CsIIV21 0.5 1.25 2.5 x (a.u.) 3.75 5.0 1200 900 600 time (fs) 300 FIG. I. Evolution of the "cleaned" wave function on BO surface 2. Evolution
Page 13: Locking a molecular bond: A case study of CsIIV21 0.5 1.25 2.5 x (a.u.) 3.75 5.0 1200 900 600 time (fs) 300 FIG. I. Evolution of the "cleaned" wave function on BO surface 2. Evolution