Titanium nitride (TiN) is highly attractive for plasmonics and nanophotonics applications owing to its gold‐like but tunable optical properties. Its prodigious potential for plasmonics has been demonstrated on sapphire or bulk MgO. For a transformational impact, high optical quality TiN on Si is required instead, which would support the integration of nanophotonics with the complementary metal‐oxide‐semiconductor (CMOS) electronics. However, TiN grown on Si, even at elevated temperatures, lacks the optical quality needed, imposed by the large lattice mismatch between them. Here, a novel approach is reported wherein a thin MgO interlayer is inserted between TiN and Si. The improved crystalline quality enabled by MgO for TiN on Si(001) leads ...
Publication status: PublishedGroup IVB metal nitrides have attracted great interest as alternative p...
Titanium Nitride (TiN) is a mechanically-robust, high-temperature stable, metallic material receivin...
Group IVB metal nitrides have attracted great interest as alternative plasmonic materials. Among the...
An insulator-metal-insulator plasmonic interconnect using TiN, a CMOS-compatible material, is propos...
Conventionally used plasmonic materials generally have low thermal stability, low chemical durabilit...
New opportunities for plasmonic applications at high temperatures have stimulated interest in refrac...
Titanium nitride (TiN) has emerged as a highly promising alternative to traditional plasmonic materi...
Transition metal nitrides have recently garnered much interest as alternative materials for robust p...
The search for alternative plasmonic materials with improved optical properties, easier fabrication ...
Titanium nitride is a well-known conductive ceramic material that has recently experienced resumed a...
© 2020 Optical Society of America under the terms of the OSA Open Access Publishing Agreement. Alter...
The fields of nanophotonics and metamaterials have revolutionized the way we think of optical space ...
Plasmonic materials display high local field enhancements and enable the sub-wavelength confinement ...
Текст статьи не публикуется в открытом доступе в соответствии с политикой журнала.We propose to util...
Over the last years, promising concepts and practical approaches of miniaturized devices with remark...
Publication status: PublishedGroup IVB metal nitrides have attracted great interest as alternative p...
Titanium Nitride (TiN) is a mechanically-robust, high-temperature stable, metallic material receivin...
Group IVB metal nitrides have attracted great interest as alternative plasmonic materials. Among the...
An insulator-metal-insulator plasmonic interconnect using TiN, a CMOS-compatible material, is propos...
Conventionally used plasmonic materials generally have low thermal stability, low chemical durabilit...
New opportunities for plasmonic applications at high temperatures have stimulated interest in refrac...
Titanium nitride (TiN) has emerged as a highly promising alternative to traditional plasmonic materi...
Transition metal nitrides have recently garnered much interest as alternative materials for robust p...
The search for alternative plasmonic materials with improved optical properties, easier fabrication ...
Titanium nitride is a well-known conductive ceramic material that has recently experienced resumed a...
© 2020 Optical Society of America under the terms of the OSA Open Access Publishing Agreement. Alter...
The fields of nanophotonics and metamaterials have revolutionized the way we think of optical space ...
Plasmonic materials display high local field enhancements and enable the sub-wavelength confinement ...
Текст статьи не публикуется в открытом доступе в соответствии с политикой журнала.We propose to util...
Over the last years, promising concepts and practical approaches of miniaturized devices with remark...
Publication status: PublishedGroup IVB metal nitrides have attracted great interest as alternative p...
Titanium Nitride (TiN) is a mechanically-robust, high-temperature stable, metallic material receivin...
Group IVB metal nitrides have attracted great interest as alternative plasmonic materials. Among the...