atoms and molecules in taylored strong laser fields-2 · atoms and molecules in taylored laser...

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Atomsandmoleculesintayloredlaserfields ThomasPfeifer

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Anongoingrevolutioninlasersciencenowadaysprovidescoherentlightthroughoutalargerangeoftheelectromagneticspectrum,spanningallthewayfromTHzviainfraredandopticalintothe(extreme)UVandthex-rayrange.Theselaserfieldsalsoreachintensitiesthatallownotonlytoperformsingle-photonionization,(linear)excitation,andspectroscopyofmaterialsbutunlockthemanipulationofmatterdirectlyonthelevelofindividualnucleiandelectronsinmoleculesandatoms.

Imagineageneralmattersynthesizer,oranatomic3Dprinter,foranymolecularstructureandevensupramolecularassemblies.Inprinciple,thefullcontrolovertheelectricfieldinspaceandtimeacrossallelectromagneticfrequenciesallowstosteernucleiandtheirelectronsfromanysuppliedformintoadesiredmoleculartargetstructure.Butforthis,weneedakindoffour-dimensional"arbitrary-waveformsynthesizer"foropticallighttogenerateelectromagneticfieldsofaspecificshape"taylor-made"togenerateaspecificoutcomeofthesynthesisofthemolecularprintingprocess.

Thiscourseprovidesanoverviewofthefundamentalsandcurrentstateoftheartinthegenerationandmanipulationofintenselaserlightfields,bothintimeandinspace,andthecorrespondingscientificandtechnologicalapplications.Itstartsoutwiththebasicsoflaserpulseshaping,variousshapingtechniquesandmetrology.Fieldshapingonasub-cyclebasis,i.e.phase-controlofmulti-octavespanningspectracurrentlyopensnewroutesinthecontrolofelectrondynamics.Controloverthespatialpropertiesoflightwillalsobecovered,includingthepolarizationstateoflightaswellasthespatialstructure,bothinfreespaceaswellasnear-fieldgeometries,includingtheangularmomentumandtopologicalstatesoflight.

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