Propagation time through an optical fibre changes with the environment, e.g., a change in temperature alters the fibre length and its refractive index. These changes have negligible impact in many key fibre applications, e.g., telecommunications, however, they can be detrimental in many others. Examples are fibre-based interferometry (e.g., for precise measurement and sensing) and fibre-based transfer and distribution of accurate time and frequency. Here we show through two independent experiments that hollow-core photonic bandgap fibres have a significantly smaller sensitivity to temperature variations than traditional solid-core fibres. The 18 times improvement observed, over 3 times larger than previously reported, makes them the most en...
We demonstrate a hollow-core photonic bandgap fiber delay-line based 10 GHz Optoelectronic oscillato...
The optical phase accumulated when light propagates through an optical fiber changes with temperatur...
Most optical fibre-based ambient refractive index sensors (including individual long-period gratings...
Propagation time through standard optical fibres changes with temperature at a rate of 40ps/km/K. Th...
Propagation time through standard (solid core) optical fibers changes with the temperature at a rate...
Many applications rely on the ultra-precise timing of optical signals through fiber, such as fiber i...
Many applications rely on the ultra-precise timing of optical signals through fiber, such as fiber i...
We discuss our recent work on the thermal sensitivity of phase and propagation delay in hollow-core ...
Many scientific and practical applications require the propagation time through cables to be well de...
Environmental temperature fluctuations cause phase changes of the light propagating through optical ...
Rough data used for our publication in Scientific Reports. Article is entitled: Ultralow thermal sig...
We demonstrate 20-times greater tolerance to temperature variation using hollow core fibres compared...
Optoelectronic oscillators (OEOs) are capable of generating microwave signals with high spectral pur...
One of the key functionalities in microwave photonics is to be able to define controllable time dela...
The thermal phase sensitivity of an optical fiber quantifies the degree to which a change in ambient...
We demonstrate a hollow-core photonic bandgap fiber delay-line based 10 GHz Optoelectronic oscillato...
The optical phase accumulated when light propagates through an optical fiber changes with temperatur...
Most optical fibre-based ambient refractive index sensors (including individual long-period gratings...
Propagation time through standard optical fibres changes with temperature at a rate of 40ps/km/K. Th...
Propagation time through standard (solid core) optical fibers changes with the temperature at a rate...
Many applications rely on the ultra-precise timing of optical signals through fiber, such as fiber i...
Many applications rely on the ultra-precise timing of optical signals through fiber, such as fiber i...
We discuss our recent work on the thermal sensitivity of phase and propagation delay in hollow-core ...
Many scientific and practical applications require the propagation time through cables to be well de...
Environmental temperature fluctuations cause phase changes of the light propagating through optical ...
Rough data used for our publication in Scientific Reports. Article is entitled: Ultralow thermal sig...
We demonstrate 20-times greater tolerance to temperature variation using hollow core fibres compared...
Optoelectronic oscillators (OEOs) are capable of generating microwave signals with high spectral pur...
One of the key functionalities in microwave photonics is to be able to define controllable time dela...
The thermal phase sensitivity of an optical fiber quantifies the degree to which a change in ambient...
We demonstrate a hollow-core photonic bandgap fiber delay-line based 10 GHz Optoelectronic oscillato...
The optical phase accumulated when light propagates through an optical fiber changes with temperatur...
Most optical fibre-based ambient refractive index sensors (including individual long-period gratings...