Manipulating Bloch surface waves in 2D: a platform concept-based flat lens

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Manipulating Bloch surface waves in 2D: a platform concept-based flat lens

At the end of the 1970s, it was confirmed that dielectric multilayers can sustain Bloch surface waves (BSWs). However, BSWs were not widely studied until more recently. Taking advantage of their high-quality factor, sensing applications have focused on BSWs. Thus far, no work has been performed to manipulate and control the natural surface propagations in terms of defined functions with two-dim...

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2D Optics on Bloch Surface Waves (BSWs) Based Platform:

The dielectric multilayer is specially tailored to support BSWs with properties unattainable using conventional materials. In particular, the low-loss characteristic of dielectric material enables the propagation of BSWs over large distances and enables large resonance strengths. These properties are highly desirable for a 2D optics platform. Elements such as lenses, prisms, waveguides, resonat...

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A novel dielectric multilayer platform sustaining Bloch surface waves is investigated for integrated photonic chips. These surface waves can be manipulated by two dimensional dielectric optical components patterned on top of the platform. We study the properties of high refractive index materials (TiO2) as active top layer of platform. Concept The Bloch surface waves (BSWs) are surface electrom...

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Near Field Investigation of Bloch Surface Based Platform for 2D Integrated Optics

Dielectric multilayers sustaining Bloch surface waves (BSWs) are considered as a novel platform for two dimensional (2D) integrated optics. The dielectric platform is exploited to manipulate surface waves by patterning 2D dielectric optical components on top of it. BSW shows a potential of higher propagation length and large resonance strength because of low loss characteristics of dielectric m...

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ژورنال

عنوان ژورنال: Light: Science & Applications

سال: 2014

ISSN: 2047-7538

DOI: 10.1038/lsa.2014.5