In this work, we report an optical method for characterizing crystal phases along single-semiconductor III–V nanowires based on the measurement of polarization-dependent second-harmonic generation. This powerful imaging method is based on a per-pixel analysis of the second-harmonic-generated signal on the incoming excitation polarization. The dependence of the second-harmonic generation responses on the nonlinear second-order susceptibility tensor allows the distinguishing of areas of pure wurtzite, zinc blende, and mixed and rotational twins crystal structures in individual nanowires. With a far-field nonlinear optical microscope, we recorded the second-harmonic generation in GaAs nanowires and precisely determined their various crystal st...
We have investigated nanocrystals of Fe(IO3)3 by polarization-sensitive second harmonic generation (...
Resonant semiconductor metasurfaces are an emerging versatile platform for nonlinear photonics. In t...
We report on a crystal phase-dependent photoluminescence (PL) polarization effect in individual wurt...
We demonstrate the utility of optical second harmonic generation (SHG) polarimetry to perform struct...
Nonlinear optical (NLO) microscopy has raised much interest with its superior capabilities in high-r...
We demonstrate that optical second harmonic generation (SHG) can be utilized to determine the exact ...
GaAs-based semiconductors are highly attractive for diverse nonlinear photonic applications, owing t...
We demonstrate nonlinear microscopy of oriented nanowires using excitation beams with binary phase m...
This dissertation details the development of second-order nonlinear optical techniques for the eluci...
We demonstrate the direct detection of spontaneous polarization in the wurtzite crystal phase of gal...
International audienceWe have investigated nanocrystals of Fe(IO3)3 by polarization-sensitive second...
We use the nonlinear optical property of GaAs to directly visualize the path of the near infrared in...
International audienceWe have investigated the nonlinear optical properties of nanosized grains of F...
The optical and electrical characterization of nanostructures is crucial for all applications in nan...
The optical and electrical characterization of nanostructures is crucial for all applications in nan...
We have investigated nanocrystals of Fe(IO3)3 by polarization-sensitive second harmonic generation (...
Resonant semiconductor metasurfaces are an emerging versatile platform for nonlinear photonics. In t...
We report on a crystal phase-dependent photoluminescence (PL) polarization effect in individual wurt...
We demonstrate the utility of optical second harmonic generation (SHG) polarimetry to perform struct...
Nonlinear optical (NLO) microscopy has raised much interest with its superior capabilities in high-r...
We demonstrate that optical second harmonic generation (SHG) can be utilized to determine the exact ...
GaAs-based semiconductors are highly attractive for diverse nonlinear photonic applications, owing t...
We demonstrate nonlinear microscopy of oriented nanowires using excitation beams with binary phase m...
This dissertation details the development of second-order nonlinear optical techniques for the eluci...
We demonstrate the direct detection of spontaneous polarization in the wurtzite crystal phase of gal...
International audienceWe have investigated nanocrystals of Fe(IO3)3 by polarization-sensitive second...
We use the nonlinear optical property of GaAs to directly visualize the path of the near infrared in...
International audienceWe have investigated the nonlinear optical properties of nanosized grains of F...
The optical and electrical characterization of nanostructures is crucial for all applications in nan...
The optical and electrical characterization of nanostructures is crucial for all applications in nan...
We have investigated nanocrystals of Fe(IO3)3 by polarization-sensitive second harmonic generation (...
Resonant semiconductor metasurfaces are an emerging versatile platform for nonlinear photonics. In t...
We report on a crystal phase-dependent photoluminescence (PL) polarization effect in individual wurt...