Zobrazeno 1 - 10
of 26
pro vyhledávání: '"Daryl I. Vulis"'
Autor:
Justin R. Gagnon, Orad Reshef, Daniel H. G. Espinosa, M. Zahirul Alam, Daryl I. Vulis, Erik N. Knall, Jeremy Upham, Yang Li, Ksenia Dolgaleva, Eric Mazur, Robert W. Boyd
Publikováno v:
Physical review letters. 128(20)
The nonlinear optical response of materials is the foundation upon which applications such as frequency conversion, all-optical signal processing, molecular spectroscopy, and nonlinear microscopy are built. However, the utility of all such parametric
Autor:
Danchen Jia, Haoning Tang, Daryl I. Vulis, Eric Mazur, Yueyang Liu, Sarah Alejandra Camayd-Muñoz, Fan Du, Clayton DeVault, Yang Li, Olivia Mello
Materials with a zero refractive index support electromagnetic modes that exhibit stationary phase profiles. While such materials have been realized across the visible and near-infrared spectral range, radiative and dissipative optical losses have hi
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::cc2882e60cfdf1f6bb806f21bfeb45d0
Publikováno v:
ACS Photonics. 4:2385-2389
We demonstrate silicon waveguides that support phase-free propagation in the telecom regime. These waveguides have smaller footprints and exhibit improved energy transfer capabilities as compared to previous optical waveguides that support phase-adva
Autor:
Mei Yin, Philip Camayd-Munoz, Orad Reshef, Eric Mazur, Shota Kita, Daryl I. Vulis, Marko Loncar, Yang Li
Publikováno v:
Photonic and Phononic Properties of Engineered Nanostructures VIII.
Zero-index metamaterials exhibit exotic optical properties such as uniform spatial phase and infinite wavelength. These extreme properties can be utilized for integrated-optics applications. However, practical implementation of zero-index-based photo
Publikováno v:
Advanced Photonics 2018 (BGPP, IPR, NP, NOMA, Sensors, Networks, SPPCom, SOF).
Integrated Dirac-cone metamaterials enable effective refractive indices near zero in the standard silicon-on-insulator (SOI) platform. We experimentally demonstrate small-footprint (≈λ/2-wide) zero-index structures in the telecom regime.
Autor:
Philip Munoz, Daryl I. Vulis, Mei Yin, Marko Loncar, Yang Li, Eric Mazur, Shota Kita, Orad Reshef
Publikováno v:
Nature Photonics. 9:738-742
Metamaterials with a refractive index of zero exhibit physical properties such as infinite phase velocity and wavelength. However, there is no way to implement these materials on a photonic chip, restricting the investigation and application of zero-
Autor:
Yang Li, Eric Mazur, Marko Loncar, Mei Yin, Orad Reshef, Philip Camayd-Munoz, Daryl I. Vulis, Shota Kita
Publikováno v:
Optics express. 25(11)
Zero-index materials exhibit exotic optical properties that can be utilized for integrated-optics applications. However, practical implementation requires compatibility with complementary metallic-oxide-semiconductor (CMOS) technologies. We demonstra
Autor:
Eric Mazur, Daryl I. Vulis, Nabiha Saklayen, Alexander Raun, Marinna Madrid, Weilu Shen, Evelyn L. Hu, Christine M. Zgrabik
Publikováno v:
Frontiers in Ultrafast Optics: Biomedical, Scientific, and Industrial Applications XVII.
Efficient drug and biomolecular delivery into cells is an important area of biomedical research. Intracellular delivery relies on porating cell membranes to allow exterior molecules to enter the cell efficiently and viably. Various methods, including
Autor:
Eric Mazur, Jeffery Nelson, Marinus Huber, Weilu Shen, Marinna Madrid, Nabiha Saklayen, Arthur McClelland, Daryl I. Vulis, Alexander Heisterkamp, Valeria Nuzzo
Publikováno v:
ACS nano. 11(4)
Efficiently delivering functional cargo to millions of cells on the time scale of minutes will revolutionize gene therapy, drug discovery, and high-throughput screening. Recent studies of intracellular delivery with thermoplasmonic structured surface
Autor:
Eric Mazur, Olivia Mello, Orad Reshef, Yu Peng, Marko Loncar, Yang Li, Peter N. Saeta, Philip Camayd-Munoz, Haoning Tang, Daryl I. Vulis
Publikováno v:
Conference on Lasers and Electro-Optics.
We achieve strong local-field enhancement within a novel inhomogeneous metamaterial whose graded refractive index is realized using Dirac-cone metamaterials. This transition metamaterial provides a powerful tool for sensing, nonlinear optics, and qua