Here, we analyze the dispersion behavior of revolver-type anti-resonant hollow core fibers, revealing that the chromatic dispersion of this type of fiber geometry is dominated by the resonances of the glass annuluses, whereas the actual arrangement of the anti-resonant microstructure has a minor impact. Based on these findings, we show that the dispersion behavior of the fundamental core mode can be approximated by that of a tube-type fiber, allowing us to derive analytic expressions for phase index, group-velocity dispersion and zero-dispersion wavelength. The resulting equations and simulations reveal that the emergence of zero group velocity dispersion in anti-resonant fibers is fundamentally associated with the adjacent annulus resonanc...
Ultrafast supercontinuum generation in gas-filled waveguides is an enabling technology for many intr...
We analyze the higher-order core mode content in various designs of antiresonant hollow core fibers ...
We experimentally and numerically investigate femtosecond pulse propagation in a microstructured opt...
Here, we analyze the dispersion behavior of revolver-type anti-resonant hollow core fibers, revealin...
We present empirical formulae that provide dispersion and effective area of the fundamental mode in ...
We numerically investigate the effect of mode-area dispersion in a tubular-type anti-resonant hollow...
Hollow-core antiresonant fibers operating in the ultraviolet to mid-infrared regions are currently o...
Multi-moded, anti-resonant hollow-core fibre shows great promise for a range of applications from hi...
We present a theoretical analysis into the fundamental physical mechanisms contributing to backscatt...
In this paper, we present numerical studies of several different structures of anti-resonant, hollow...
In this paper, we present numerical studies of several different structures of anti-resonant, hollow...
Gas-filled hollow-core optical waveguides have attracted growing attention in recent years. They pro...
We show the exploration of higher order core mode content in various designs of anti-resonant hollow...
Hollow core photonic bandgap fibers provide a new geometry for the realization and enhancement of ma...
AbstractIn this work a comparative analysis of dispersion properties of hollow core photonic crystal...
Ultrafast supercontinuum generation in gas-filled waveguides is an enabling technology for many intr...
We analyze the higher-order core mode content in various designs of antiresonant hollow core fibers ...
We experimentally and numerically investigate femtosecond pulse propagation in a microstructured opt...
Here, we analyze the dispersion behavior of revolver-type anti-resonant hollow core fibers, revealin...
We present empirical formulae that provide dispersion and effective area of the fundamental mode in ...
We numerically investigate the effect of mode-area dispersion in a tubular-type anti-resonant hollow...
Hollow-core antiresonant fibers operating in the ultraviolet to mid-infrared regions are currently o...
Multi-moded, anti-resonant hollow-core fibre shows great promise for a range of applications from hi...
We present a theoretical analysis into the fundamental physical mechanisms contributing to backscatt...
In this paper, we present numerical studies of several different structures of anti-resonant, hollow...
In this paper, we present numerical studies of several different structures of anti-resonant, hollow...
Gas-filled hollow-core optical waveguides have attracted growing attention in recent years. They pro...
We show the exploration of higher order core mode content in various designs of anti-resonant hollow...
Hollow core photonic bandgap fibers provide a new geometry for the realization and enhancement of ma...
AbstractIn this work a comparative analysis of dispersion properties of hollow core photonic crystal...
Ultrafast supercontinuum generation in gas-filled waveguides is an enabling technology for many intr...
We analyze the higher-order core mode content in various designs of antiresonant hollow core fibers ...
We experimentally and numerically investigate femtosecond pulse propagation in a microstructured opt...