Novel applications in optical coherence tomography (OCT) and LiDAR systems have become possible due to performance characteristics of a state-of-the-art silica-on-silicon planar lightwave circuit (PLC) platform. We have achieved ultra-low propagation losses of <0.009 dB/cm with unmatched phase control in a polarization-insensitive way, enabling a range of real-time advanced vision and imaging applications utilizing k-clocks and analog frequency sampling architectures
We present an integrated silicon Michelson interferometer for OCT fabricated with wafer scale deep U...
Silicon photonics is the most promising technology for applications ranging from large-bandwidth, lo...
A new class of integrated optical waveguide structures is presented, based on low cost CMOS compatib...
Silica-on-silicon planar lightwave circuit (PLC) technology is well established and provides a low l...
Waveguiding structures are one of the fundamental components of integrated photonic circuitry. Devic...
An increasing number of systems and applications depend on photonics for transmission and signal pro...
An increasing number of systems and applications depend on photonics for transmission and signal pro...
Optical coherence tomography (OCT) is a medical imaging technology capable of producing high-resolut...
Abstract: We demonstrate record low (0.045 ± 0.04 dB/m) total propagation loss in silica-on-silicon...
Optical coherence tomography (OCT) is a medical imaging technology capable of producing high-resolut...
Optical coherence tomography (OCT) is a medical imaging technology capable of producing high-resolut...
The scanning delay line is a key component of time-domain optical coherence tomography systems. It h...
We present an integrated silicon Michelson interferometer for OCT fabricated with wafer scale deep U...
Abstract Planar waveguides with ultra-low optical propaga-tion loss enable a plethora of passive pho...
Silicon photonics is the most promising technology for applications ranging from large-bandwidth, lo...
We present an integrated silicon Michelson interferometer for OCT fabricated with wafer scale deep U...
Silicon photonics is the most promising technology for applications ranging from large-bandwidth, lo...
A new class of integrated optical waveguide structures is presented, based on low cost CMOS compatib...
Silica-on-silicon planar lightwave circuit (PLC) technology is well established and provides a low l...
Waveguiding structures are one of the fundamental components of integrated photonic circuitry. Devic...
An increasing number of systems and applications depend on photonics for transmission and signal pro...
An increasing number of systems and applications depend on photonics for transmission and signal pro...
Optical coherence tomography (OCT) is a medical imaging technology capable of producing high-resolut...
Abstract: We demonstrate record low (0.045 ± 0.04 dB/m) total propagation loss in silica-on-silicon...
Optical coherence tomography (OCT) is a medical imaging technology capable of producing high-resolut...
Optical coherence tomography (OCT) is a medical imaging technology capable of producing high-resolut...
The scanning delay line is a key component of time-domain optical coherence tomography systems. It h...
We present an integrated silicon Michelson interferometer for OCT fabricated with wafer scale deep U...
Abstract Planar waveguides with ultra-low optical propaga-tion loss enable a plethora of passive pho...
Silicon photonics is the most promising technology for applications ranging from large-bandwidth, lo...
We present an integrated silicon Michelson interferometer for OCT fabricated with wafer scale deep U...
Silicon photonics is the most promising technology for applications ranging from large-bandwidth, lo...
A new class of integrated optical waveguide structures is presented, based on low cost CMOS compatib...