Diamond offers unique material advantages for the realization of micro- and nanomechanical resonators because of its high Young's modulus, compatibility with harsh environments and superior thermal properties. At the same time, the wide electronic bandgap of 5.45 eV makes diamond a suitable material for integrated optics because of broadband transparency and the absence of free-carrier absorption commonly encountered in silicon photonics. Here we take advantage of both to engineer full-scale optomechanical circuits in diamond thin films. We show that polycrystalline diamond films fabricated by chemical vapour deposition provide a convenient wafer-scale substrate for the realization of high-quality nanophotonic devices. Using free-standing n...
The field of diamond photonics is reviewed, with a focus on recent experimental demonstrations of ph...
ABSTRACT: The realization of an integrated diamond photonic platform, based on a thin single crystal...
Cavity-optomechanical systems realized in single-crystal diamond are poised to benefit from its extr...
We demonstrate integrated optomechanical circuits with high mechanical quality factors prepared from...
Diamond provides superior optical and mechanical material properties, making it a prime candidate fo...
Diamond integrated photonic devices are promising candidates for emerging applications in nanophoton...
We realize diamond electro-optomechanical resonators operated at frequencies above 100 MHz. The nano...
Microresonators are fundamental building blocks of any photonic integrated circuit, as they can be u...
Single-crystal diamond, with its unique optical, mechanical and thermal properties, has emerged as a...
Synthetic diamond films can be prepared on a waferscale by using chemical vapour deposition (CVD) on...
Single-crystal diamond optomechanical devices have the potential to enable fundamental studies and t...
Diamond has emerged as a promising platform for nanophotonic, optical, and quantum technologies. Hig...
The development of a suitable material platform for photonic integrated circuits (PICs) could have a...
© 2016 Dr. Afaq Habib PirachaThere is an intense interest in exploiting diamond’s remarkable combina...
Realizing complex three-dimensional structures in a range of material systems is critical to a varie...
The field of diamond photonics is reviewed, with a focus on recent experimental demonstrations of ph...
ABSTRACT: The realization of an integrated diamond photonic platform, based on a thin single crystal...
Cavity-optomechanical systems realized in single-crystal diamond are poised to benefit from its extr...
We demonstrate integrated optomechanical circuits with high mechanical quality factors prepared from...
Diamond provides superior optical and mechanical material properties, making it a prime candidate fo...
Diamond integrated photonic devices are promising candidates for emerging applications in nanophoton...
We realize diamond electro-optomechanical resonators operated at frequencies above 100 MHz. The nano...
Microresonators are fundamental building blocks of any photonic integrated circuit, as they can be u...
Single-crystal diamond, with its unique optical, mechanical and thermal properties, has emerged as a...
Synthetic diamond films can be prepared on a waferscale by using chemical vapour deposition (CVD) on...
Single-crystal diamond optomechanical devices have the potential to enable fundamental studies and t...
Diamond has emerged as a promising platform for nanophotonic, optical, and quantum technologies. Hig...
The development of a suitable material platform for photonic integrated circuits (PICs) could have a...
© 2016 Dr. Afaq Habib PirachaThere is an intense interest in exploiting diamond’s remarkable combina...
Realizing complex three-dimensional structures in a range of material systems is critical to a varie...
The field of diamond photonics is reviewed, with a focus on recent experimental demonstrations of ph...
ABSTRACT: The realization of an integrated diamond photonic platform, based on a thin single crystal...
Cavity-optomechanical systems realized in single-crystal diamond are poised to benefit from its extr...