We demonstrate highly efficient coupling of light from an optical fiber to a silicon photonic crystal optomechanical cavity. The fiber-to-cavity coupling utilizes a compact ( L approximate to 25 mu m) intermediate adiabatic coupler. The optical coupling is lithographically controlled, broadband, relatively insensitive to fiber misalignment and allows for light to be transferred from an optical fiber to, in principle, any photonic chip with refractive index greater than that of the optical fiber. Here we demonstrate single-sided cavity coupling with a total fiber-to-cavity optical power coupling efficiency of 85%. (c) 2013 AIP Publishing LLC
Silicon, which is the second element of group IV of the periodic table, forms the backbone of the se...
Optomechanical systems, in which the vibrations of a mechanical resonator are coupled to an electrom...
Coupling of light to and from integrated optical circuits has been recognized as a major practical c...
We demonstrate highly efficient coupling of light from an optical fiber to a silicon photonic crysta...
We fabricate and characterize a microscale silicon opto-electro-mechanical system whose mechanical m...
A significant challenge in the development of chip-scale cavity-optomechanical devices as testbeds f...
We present the design, fabrication, and characterization of a planar silicon photonic crystal cavity...
Given the fact that efficient and compact light emitters on a silicon (Si) platform yet do not exist...
A technique is demonstrated which efficiently transfers light between a tapered standard single-mode...
Design of a doubly-clamped beam structure capable of localizing mechanical and optical energy at the...
We demonstrate a strong optomechanical coupling in a high-quality-factor air-slot mode-gap photonic ...
A technique is demonstrated which efficiently transfers light between a tapered standard single-mode...
Efficient light energy transfer between optical waveguides has been a critical issue in various area...
We report on a highly efficient grating coupler between an optical fiber and a silicon photonic circ...
We present the design, fabrication, and characterization of a planar silicon photonic crystal cavity...
Silicon, which is the second element of group IV of the periodic table, forms the backbone of the se...
Optomechanical systems, in which the vibrations of a mechanical resonator are coupled to an electrom...
Coupling of light to and from integrated optical circuits has been recognized as a major practical c...
We demonstrate highly efficient coupling of light from an optical fiber to a silicon photonic crysta...
We fabricate and characterize a microscale silicon opto-electro-mechanical system whose mechanical m...
A significant challenge in the development of chip-scale cavity-optomechanical devices as testbeds f...
We present the design, fabrication, and characterization of a planar silicon photonic crystal cavity...
Given the fact that efficient and compact light emitters on a silicon (Si) platform yet do not exist...
A technique is demonstrated which efficiently transfers light between a tapered standard single-mode...
Design of a doubly-clamped beam structure capable of localizing mechanical and optical energy at the...
We demonstrate a strong optomechanical coupling in a high-quality-factor air-slot mode-gap photonic ...
A technique is demonstrated which efficiently transfers light between a tapered standard single-mode...
Efficient light energy transfer between optical waveguides has been a critical issue in various area...
We report on a highly efficient grating coupler between an optical fiber and a silicon photonic circ...
We present the design, fabrication, and characterization of a planar silicon photonic crystal cavity...
Silicon, which is the second element of group IV of the periodic table, forms the backbone of the se...
Optomechanical systems, in which the vibrations of a mechanical resonator are coupled to an electrom...
Coupling of light to and from integrated optical circuits has been recognized as a major practical c...