We show that optical fibers doped with as little as 7 mole% P2O5 have 27% lower temperature sensitivity of accumulated phase (relevant in interferometry) as compared to standard optical fibers. We believe full temperature insensitivity can be reached with higher levels of doping
The temperature sensitivity of a two-mode (TM) photonic crystal fiber (PCF) interferometric sensor w...
In this Final Year Project, the thermo-properties of PCF was changed by using non-selective infiltra...
We have measured the optical phase sensitivity of fiber based on poly(methyl methacrylate) under nea...
The thermal phase sensitivity of an optical fiber quantifies the degree to which a change in ambient...
Environmental temperature fluctuations cause phase changes of the light propagating through optical ...
We show for the first time the interference pattern of a Mach-Zehnder interferometer to be fully ins...
We measured the thermal sensitivity of SMF-28 fiber in the range -190°C-25°C and measured a > 3-f...
We present a simple technique to experimentally determine the optical-path length change with temper...
We present a simple technique to experimentally determine the optical-path length change with temper...
We demonstrate a 3× thermal phase sensitivity reduction for a hollow-core fiber (HCF) Fabry–Perot in...
We have measured the optical phase sensitivity of fiber based on poly(methyl methacrylate) under nea...
The thermomechanical behavior of a standard optical fiber with double coating is theoretically analy...
In this Final Year Project, the thermo-properties of PCF was changed by using non-selective infiltra...
We have measured the optical phase sensitivity of fiber based on poly(methyl methacrylate) under nea...
This work analyzes the applicability of different temperature sensing methods in order to compensate...
The temperature sensitivity of a two-mode (TM) photonic crystal fiber (PCF) interferometric sensor w...
In this Final Year Project, the thermo-properties of PCF was changed by using non-selective infiltra...
We have measured the optical phase sensitivity of fiber based on poly(methyl methacrylate) under nea...
The thermal phase sensitivity of an optical fiber quantifies the degree to which a change in ambient...
Environmental temperature fluctuations cause phase changes of the light propagating through optical ...
We show for the first time the interference pattern of a Mach-Zehnder interferometer to be fully ins...
We measured the thermal sensitivity of SMF-28 fiber in the range -190°C-25°C and measured a > 3-f...
We present a simple technique to experimentally determine the optical-path length change with temper...
We present a simple technique to experimentally determine the optical-path length change with temper...
We demonstrate a 3× thermal phase sensitivity reduction for a hollow-core fiber (HCF) Fabry–Perot in...
We have measured the optical phase sensitivity of fiber based on poly(methyl methacrylate) under nea...
The thermomechanical behavior of a standard optical fiber with double coating is theoretically analy...
In this Final Year Project, the thermo-properties of PCF was changed by using non-selective infiltra...
We have measured the optical phase sensitivity of fiber based on poly(methyl methacrylate) under nea...
This work analyzes the applicability of different temperature sensing methods in order to compensate...
The temperature sensitivity of a two-mode (TM) photonic crystal fiber (PCF) interferometric sensor w...
In this Final Year Project, the thermo-properties of PCF was changed by using non-selective infiltra...
We have measured the optical phase sensitivity of fiber based on poly(methyl methacrylate) under nea...