Conventional photonic integration technologies are inevitably substrate-dependent, as different substrate platforms stipulate vastly different device fabrication methods and processing compatibility requirements. Here we capitalize on the unique monolithic integration capacity of composition-engineered non-silicate glass materials (amorphous chalcogenides and transition metal oxides) to enable multifunctional, multi-layer photonic integration on virtually any technically important substrate platforms. We show that high-index glass film deposition and device fabrication can be performed at low temperatures (\u3c 250 °C) without compromising their low loss characteristics, and is thus fully compatible with monolithic integration on a broad ra...
Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, ...
Hu, JuejunFlexible integrated photonics is a new technology that has only started to burgeon in the ...
Hu, JuejunChalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or ...
Conventional photonic integration technologies are inevitably substrate-dependent, as different subs...
Conventional photonic integration technologies are inevitably substrate-dependent, as different subs...
Photonic integration on thin flexible plastic substrates is important for emerging applications rang...
Using high-index glasses as the backbone optical material, both passive and active photonic devices ...
Photonic integration on thin flexible plastic substrates is important for emerging applications rang...
Using high-index glasses as the backbone optical material, both passive and active photonic devices ...
Organic polymer materials are widely credited with extreme versatility for thin film device processi...
Organic polymer materials are widely credited with extreme versatility for thin film device processi...
Organic polymer materials are widely credited with extreme versatility for thin film device processi...
This paper reports a versatile technique for the fabrication of high-index-contrast photonic structu...
This paper reports a versatile technique for the fabrication of high-index-contrast photonic structu...
Due to their extraordinary optoelectronic properties, 2-D materials have been identified as promisin...
Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, ...
Hu, JuejunFlexible integrated photonics is a new technology that has only started to burgeon in the ...
Hu, JuejunChalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or ...
Conventional photonic integration technologies are inevitably substrate-dependent, as different subs...
Conventional photonic integration technologies are inevitably substrate-dependent, as different subs...
Photonic integration on thin flexible plastic substrates is important for emerging applications rang...
Using high-index glasses as the backbone optical material, both passive and active photonic devices ...
Photonic integration on thin flexible plastic substrates is important for emerging applications rang...
Using high-index glasses as the backbone optical material, both passive and active photonic devices ...
Organic polymer materials are widely credited with extreme versatility for thin film device processi...
Organic polymer materials are widely credited with extreme versatility for thin film device processi...
Organic polymer materials are widely credited with extreme versatility for thin film device processi...
This paper reports a versatile technique for the fabrication of high-index-contrast photonic structu...
This paper reports a versatile technique for the fabrication of high-index-contrast photonic structu...
Due to their extraordinary optoelectronic properties, 2-D materials have been identified as promisin...
Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, ...
Hu, JuejunFlexible integrated photonics is a new technology that has only started to burgeon in the ...
Hu, JuejunChalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or ...