High-refractive index, low-loss oxyfluorosilicate glasses for sub-THz and millimeter wave applications

2019 ◽  
Vol 125 (15) ◽  
pp. 151609 ◽  
Author(s):  
Doddoji Ramachari ◽  
Chan-Shan Yang ◽  
Osamu Wada ◽  
Takashi Uchino ◽  
Ci-Ling Pan
2013 ◽  
Vol 102 (9) ◽  
pp. 091108 ◽  
Author(s):  
T. Campbell ◽  
A. P. Hibbins ◽  
J. R. Sambles ◽  
I. R. Hooper

Author(s):  
Kristof Lodewijks ◽  
Suseendran Jayachandran ◽  
Tangla David Kongnyuy ◽  
Silvia Lenci ◽  
Sayantan Das ◽  
...  

Author(s):  
B. R. Dantal ◽  
A. Saigal ◽  
M. A. Zimmerman

During the past decade, the preparation of inorganic/organic hybrid materials with high refractive index has attracted considerable attention. In particular, TiO2 (Titanium dioxide or Titania), as inorganic domains, have been incorporated into a polymer matrix to produce high refractive index hybrid materials [1–3]. Polarization of injection molded liquid crystal polymer/Titania composite parts have been investigated in the broad band millimeter wave frequency range. The measurements have been performed by using two different spectroscopy techniques. First, free space quasi optical millimeter wave spectrometer, equipped with a high power source coherent radiation tunable in the 40–90 GHz frequency range is used. Second, low power dispersive Fourier transform spectrometer has been used for higher frequencies in the range of 100–600 GHz. Dielectric properties of liquid crystal polymer/Titania composites have been determined in the broad band millimeter wave frequency range. A correlation between dielectric properties and dispersed Titania weight percent has been observed using the two spectroscopy techniques. It is found that the absorption coefficient and loss tangent is a strong function of the output power of the sources of the incident radiation. On the other hand, refractive index and real permittivity values measured from both spectroscopy techniques are similar. In addition, it has been found that transmittance level and absorption losses depend on the orientation of the samples with respect to the orientation of electric and magnetic fields in the incident electro-magnetic wave. Finally, the polarization of the parts varies with the direction of flow of the molten plastic into the cavity.


Nanophotonics ◽  
2020 ◽  
Vol 9 (16) ◽  
pp. 4737-4742
Author(s):  
Anton A. Shubnic ◽  
Roman G. Polozkov ◽  
Ivan A. Shelykh ◽  
Ivan V. Iorsh

AbstractWe establish a simple quantitative criterium for the search of new dielectric materials with high values of refractive index in the visible range. It is demonstrated, that for light frequencies below the bandgap, the latter is determined by the dimensionless parameter η calculated as the ratio of the sum of the widths of conduction and valence bands and the bandgap. Small values of this parameter, which can be achieved in materials with almost flat bands, lead to dramatic increase of the refractive index. We illustrate this rule with a particular example of rhenium dichalcogenides, for which we perform ab initio calculations of the band structure and optical susceptibility and predict the values of the refractive index $n{ >}5$ in a wide frequency range around 1 eV together with comparatively low losses. Our findings open new perspectives in search for the new high-index/low-loss materials for all-dielectric nanophotonics.


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