Propagation loss and dispersion characteristics of a hollow core microstructured fiber in the THz regime are numerically investigated. The fiber cladding consists of a triangular lattice formed by a periodic arrangement of dielectric tubes of Teflon. Numerical results show that guidance mechanism is the sameof kagome and square lattice fibers. Low loss and low dispersion frequency ranges can be tuned just by changing the thickness of the tubes irrespectively of their diameter. Propagation loss four decades lower than the bulk absorption and dispersion lower 0.03 ps/(nm km) can be obtained over a band of about 1.7 THz centered at 2.1 THz
The development of low loss, small size and flexible waveguides is one of the most challenging issue...
In this article, a hollow core antiresonant photonic crystal fiber is analyzed for terahertz applica...
In this article, a hollow core photonic band gap fiber is numerically investigated to obtain low-los...
Propagation loss and dispersion characteristics of a hollow core microstructured fiber in the THz re...
Propagation characteristics of a hollow core microstructured fibre in the THz regime are numerically...
In this paper Hollow Core Microstructured Fibers consisting of a regular arrangement of dielectric t...
A hollow-core microstructured polymer optical fiber was analyzed in the terahertz (THz) region. Spec...
A new hollow core fiber for THz applications consisting of dielectric tubes arranged with a octagona...
The mode properties of hollow-core fibers with a cladding formed by a periodic arrangement of dielec...
A new hollow core fiber for terahertz applications consisting of dielectric tubes arranged with an o...
Hollow core microstructured fibers whose cladding is composed by an elliptical arrangement of circul...
A hollow-core terahertz fiber composed of Bragg anti-resonant elements in a hexagonal structure is p...
This paper reviews the subject of 3D printed hollow-core fibers for the propagation of terahertz (TH...
We propose and numerically analyze various hollow-core antiresonant fiber (HC-ARF) for operation at ...
Transmission characteristics of lens-duct, Cytop planar photonic crystal waveguide (PPCW) and hollow...
The development of low loss, small size and flexible waveguides is one of the most challenging issue...
In this article, a hollow core antiresonant photonic crystal fiber is analyzed for terahertz applica...
In this article, a hollow core photonic band gap fiber is numerically investigated to obtain low-los...
Propagation loss and dispersion characteristics of a hollow core microstructured fiber in the THz re...
Propagation characteristics of a hollow core microstructured fibre in the THz regime are numerically...
In this paper Hollow Core Microstructured Fibers consisting of a regular arrangement of dielectric t...
A hollow-core microstructured polymer optical fiber was analyzed in the terahertz (THz) region. Spec...
A new hollow core fiber for THz applications consisting of dielectric tubes arranged with a octagona...
The mode properties of hollow-core fibers with a cladding formed by a periodic arrangement of dielec...
A new hollow core fiber for terahertz applications consisting of dielectric tubes arranged with an o...
Hollow core microstructured fibers whose cladding is composed by an elliptical arrangement of circul...
A hollow-core terahertz fiber composed of Bragg anti-resonant elements in a hexagonal structure is p...
This paper reviews the subject of 3D printed hollow-core fibers for the propagation of terahertz (TH...
We propose and numerically analyze various hollow-core antiresonant fiber (HC-ARF) for operation at ...
Transmission characteristics of lens-duct, Cytop planar photonic crystal waveguide (PPCW) and hollow...
The development of low loss, small size and flexible waveguides is one of the most challenging issue...
In this article, a hollow core antiresonant photonic crystal fiber is analyzed for terahertz applica...
In this article, a hollow core photonic band gap fiber is numerically investigated to obtain low-los...