Nonlinear optical techniques at visible frequencies have long been applied to condensed matter spectroscopy. However, because many important excitations of solids are found at low energies, much can be gained from the extension of nonlinear optics to mid-infrared and terahertz frequencies. For example, the nonlinear excitation of lattice vibrations has enabled the dynamic control of material functions. So far it has only been possible to exploit secondorder phonon nonlinearities at terahertz field strengths near one million volts per centimetre. Here we achieve an order-of-magnitude increase in field strength and explore higher-order phonon nonlinearities. We excite up to five harmonics of the A1 (transverse optical) phonon mode in the ferr...
This thesis is dedicated to improving the understanding of nonlinear electromagnetic probes of solid...
Amplification of light through stimulated emission or nonlinear optical interactions has had a trans...
Ultrafast optical control of ferroelectricity using intense terahertz fields has attracted significa...
Nonlinear optical techniques at visible frequencies have long been applied to condensed matter spect...
Nonlinear phononics relies on the resonant optical excitation of infrared-active lattice vibrations ...
We investigate nonlinear THz generation from lithium niobate films and crystals of different thickne...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2009.Includes bibliograp...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2019Cataloged from P...
Mid-infrared light pulses can be used to resonantly excite infrared-active vibrational modes for the...
Optical nonlinearities in solids reveal information about both the in-plane rotational and out-of-pl...
Two types of coupling between electromagnetic radiation and a crystal lattice have so far been ident...
We present a microscopic theory for ultrafast control of solids with high-intensity terahertz freque...
The ability to manipulate ferroelectrics at ultrafast speeds has long been an elusive target for mat...
Direct manipulation of the atomic lattice using intense long-wavelength laser pulses has become a vi...
Ultrafast coherent phonon dynamics in ZnO is studied via high-order harmonic generation by intense m...
This thesis is dedicated to improving the understanding of nonlinear electromagnetic probes of solid...
Amplification of light through stimulated emission or nonlinear optical interactions has had a trans...
Ultrafast optical control of ferroelectricity using intense terahertz fields has attracted significa...
Nonlinear optical techniques at visible frequencies have long been applied to condensed matter spect...
Nonlinear phononics relies on the resonant optical excitation of infrared-active lattice vibrations ...
We investigate nonlinear THz generation from lithium niobate films and crystals of different thickne...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2009.Includes bibliograp...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2019Cataloged from P...
Mid-infrared light pulses can be used to resonantly excite infrared-active vibrational modes for the...
Optical nonlinearities in solids reveal information about both the in-plane rotational and out-of-pl...
Two types of coupling between electromagnetic radiation and a crystal lattice have so far been ident...
We present a microscopic theory for ultrafast control of solids with high-intensity terahertz freque...
The ability to manipulate ferroelectrics at ultrafast speeds has long been an elusive target for mat...
Direct manipulation of the atomic lattice using intense long-wavelength laser pulses has become a vi...
Ultrafast coherent phonon dynamics in ZnO is studied via high-order harmonic generation by intense m...
This thesis is dedicated to improving the understanding of nonlinear electromagnetic probes of solid...
Amplification of light through stimulated emission or nonlinear optical interactions has had a trans...
Ultrafast optical control of ferroelectricity using intense terahertz fields has attracted significa...