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Dive into the research topics where Yuanmu Yang is active.

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Featured researches published by Yuanmu Yang.


Nano Letters | 2016

Resonantly Enhanced Second-Harmonic Generation Using III–V Semiconductor All-Dielectric Metasurfaces

Sheng Liu; Michael B. Sinclair; Sina Saravi; Gordon A. Keeler; Yuanmu Yang; John L. Reno; Gregory M. Peake; Frank Setzpfandt; Isabelle Staude; Thomas Pertsch; Igal Brener

Nonlinear optical phenomena in nanostructured materials have been challenging our perceptions of nonlinear optical processes that have been explored since the invention of lasers. For example, the ability to control optical field confinement, enhancement, and scattering almost independently allows nonlinear frequency conversion efficiencies to be enhanced by many orders of magnitude compared to bulk materials. Also, the subwavelength length scale renders phase matching issues irrelevant. Compared with plasmonic nanostructures, dielectric resonator metamaterials show great promise for enhanced nonlinear optical processes due to their larger mode volumes. Here, we present, for the first time, resonantly enhanced second-harmonic generation (SHG) using gallium arsenide (GaAs) based dielectric metasurfaces. Using arrays of cylindrical resonators we observe SHG enhancement factors as large as 10(4) relative to unpatterned GaAs. At the magnetic dipole resonance, we measure an absolute nonlinear conversion efficiency of ∼2 × 10(-5) with ∼3.4 GW/cm(2) pump intensity. The polarization properties of the SHG reveal that both bulk and surface nonlinearities play important roles in the observed nonlinear process.


Scientific Reports | 2017

Multipolar second harmonic generation in a symmetric nonlinear metamaterial

Omri Wolf; Salvatore Campione; Yuanmu Yang; Igal Brener

Optical nonlinearities are intimately related to the spatial symmetry of the nonlinear media. For example, the second order susceptibility vanishes for centrosymmetric materials under the dipole approximation. The latter concept has been naturally extended to the metamaterials’ realm, sometimes leading to the (erroneous) hypothesis that second harmonic (SH) generation is negligible in highly symmetric meta-atoms. In this work we aim to show that such symmetric meta-atoms can radiate SH light efficiently. In particular, we investigate in-plane centrosymmetric meta-atom designs where the approximation for meta-atoms breaks down. In a periodic array this building block allows us to control the directionality of the SH radiation. We conclude by showing that the use of symmetry considerations alone allows for the manipulation of the nonlinear multipolar response of a meta-atom, resulting in e.g. dipolar, quadrupolar, or multipolar emission on demand. This is because the size of the meta-atom is comparable with the free-space wavelength, thus invalidating the dipolar approximation for meta-atoms.


international conference on optical mems and nanophotonics | 2017

Femtosecond switching of infrared light using a plasmonic cadmium oxide perfect absorber

Yuanmu Yang; Kyle Kelly; Edward Sachet; Salvatore Campione; Ting S. Luk; Jon-Paul Maria; Michael B. Sinclair; Igal Brener

Using a high-electron-mobility cadmium oxide perfect absorber and intraband optical pumping, we experimentally demonstrate a reflective polarizer with a polarization extinction ratio of 91 that can be switched on and off within 800 fs.


conference on lasers and electro optics | 2016

Efficient second harmonic generation from GaAs all-dielectric metasurfaces

Sheng Liu; Gordon A. Keeler; John L. Reno; Yuanmu Yang; Michael B. Sinclair; Igal Brener

We experimentally observe large enhancement of second-harmonic generation (SHG) from GaAs metasurfaces. The SHG polarization when excited at the electric and magnetic dipole resonances is orthogonal and can be attributed to different nonlinear generation mechanisms.


Nature Photonics | 2017

Femtosecond optical polarization switching using a cadmium oxide-based perfect absorber

Yuanmu Yang; Kyle Kelley; Edward Sachet; Salvatore Campione; Ting S. Luk; Jon-Paul Maria; Michael B. Sinclair; Igal Brener


ACS Photonics | 2017

Transient GaAs Plasmonic Metasurfaces at Terahertz Frequencies

Yuanmu Yang; N. Kamaraju; Salvatore Campione; Sheng Liu; John L. Reno; Michael B. Sinclair; Rohit P. Prasankumar; Igal Brener


conference on lasers and electro optics | 2018

Shaping InAs quantum dot photoluminescence using GaAs nanoresonator arrays

Aleksandr Vaskin; Sheng Liu; Matthias Zilk; Stefan Fasold; Benjamin Leung; Miao-Chan Tsai; Yuanmu Yang; Polina P. Vabishchevich; Xiaowei He; Younghee Kim; Nicolai F. Hartmann; Sadhvikas Addamane; Gordon A. Keeler; George T. Wang; Han Htoon; Stephen K. Doorn; Ganesh Balakrishnan; Thomas Pertsch; Michael B. Sinclair; Igal Brener; Isabelle Staude


Nano Letters | 2018

Light-Emitting Metasurfaces: Simultaneous Control of Spontaneous Emission and Far-Field Radiation

Sheng Liu; Aleksandr Vaskin; Sadhvikas Addamane; Benjamin Leung; Miao-Chan Tsai; Yuanmu Yang; Polina P. Vabishchevich; Gordon A. Keeler; George T. Wang; Xiaowei He; Younghee Kim; Nicolai F. Hartmann; Han Htoon; Stephen K. Doorn; Matthias Zilk; Thomas Pertsch; Ganesh Balakrishnan; Michael B. Sinclair; Isabelle Staude; Igal Brener


conference on lasers and electro optics | 2017

Nonlinear metamaterials: Breaking the dipole approximation

Omri Wolf; Yuanmu Yang; Igal Brener


conference on lasers and electro optics | 2017

High-contrast, all-optical switching of infrared light using a cadmium oxide perfect absorber

Yuanmu Yang; Kyle Kelly; Edward Sachet; Salvatore Campione; Ting S. Luk; Jon-Paul Maria; Igal Brener

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Igal Brener

Sandia National Laboratories

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Michael B. Sinclair

Sandia National Laboratories

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Sheng Liu

Sandia National Laboratories

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John L. Reno

Sandia National Laboratories

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Salvatore Campione

Sandia National Laboratories

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Gordon A. Keeler

Sandia National Laboratories

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Edward Sachet

North Carolina State University

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Jon-Paul Maria

North Carolina State University

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Ting S. Luk

Sandia National Laboratories

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