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DTSTART;TZID=US/Eastern:20190405T122000
DTEND;TZID=US/Eastern:20190405T132000
SUMMARY:Over 100-THz bandwidth selective difference frequency generation at LaAlO3/SrTiO3 nanojunctions -- Prof. Jeremy Levy
DESCRIPTION:Applied Physics Seminar. The ability to combine continuously tunable narrow-band terahertz (THz) generation that can access both the far-infrared and mid-infrared regimes with nanometer-scale spatial resolution is highly promising for identifying underlying light-matter interactions and realizing selective control of rotational or vibrational resonances in nanoparticles or molecules. Here, we report selective difference frequency generation with over 100&thinsp;THz bandwidth via femtosecond optical pulse shaping. The THz emission is generated at nanoscale junctions at the interface of LaAlO3/SrTiO3 (LAO/STO) that is defined by conductive atomic force microscope lithography, with the potential to perform THz spectroscopy on individual nanoparticles or molecules. Numerical simulation of the time-domain signal facilitates the identification of components that contribute to the THz generation. This ultra-wide-bandwidth tunable nanoscale coherent THz source transforms the LAO/STO interface into a promising platform for integrated lab-on-chip optoelectronic devices with various functionalities.
LOCATION:CSP Conference Room (322)
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