Femtosecond pulse shaping using the geometric phase
Bilal Gökce, Yanming Li, Michael J. Escuti, Kenan Gündoğdu
Abstract
Bilal Gökce, Yanming Li, Michael J. Escuti, Kenan Gündoğdu
Abstract
We demonstrate a femtosecond pulse shaper that utilizes polarization gratings to manipulate the geometric phase of an optical pulse. This unique approach enables circular polarization-dependent shaping of femtosecond pulses. As a result, it is possible to create coherent pulse pairs with orthogonal polarizations in a 4f pulse shaper setup, something until now that, to our knowledge, was only achieved via much more complex configurations. This approach could be used to greatly simplify and enhance the functionality of multidimensional spectroscopy and coherent control experiments, in which multiple coherent pulses are used to manipulate quantum states in materials of interest.
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We demonstrate a femtosecond pulse shaper that utilizes polarization gratings to manipulate the geometric phase of an optical pulse. This unique approach enables circular polarization-dependent shaping of femtosecond pulses. As a result, it is possible to create coherent pulse pairs with orthogonal polarizations in a 4f pulse shaper setup, something until now that, to our knowledge, was only achieved via much more complex configurations. This approach could be used to greatly simplify and enhance the functionality of multidimensional spectroscopy and coherent control experiments, in which multiple coherent pulses are used to manipulate quantum states in materials of interest.
Key concepts: Femtosecond pulse shaping, Optics, Femtosecond, Pulse shaping, Multiphoton intrapulse interference phase scan, Polarization (electrochemistry), Coherent control, Ultrashort pulse