We measured the thermal sensitivity of SMF-28 fiber in the range -190°C-25°C and measured a > 3-fold decrease for uncoated fiber towards the lowest measured temperature and far higher sensitivities for coated and jacketed fibers.</p
Environmental temperature fluctuations cause phase changes of the light propagating through optical ...
Radiation effects at cryogenic temperature are investigated in two radiation-tolerant Fluorine-doped...
We have measured the optical phase sensitivity of fiber based on poly(methyl methacrylate) under nea...
We present a simple technique to experimentally determine the optical-path length change with temper...
The thermal phase sensitivity of an optical fiber quantifies the degree to which a change in ambient...
We present a simple technique to experimentally determine the optical-path length change with temper...
Thanks to their characteristics, optical fiber sensors are an ideal solution for sensing application...
The thermomechanical behavior of a standard optical fiber with double coating is theoretically analy...
We show that optical fibers doped with as little as 7 mole% P2O5 have 27% lower temperature sensitiv...
A temperature sensor using single-mode tapered fiber is presented. To better understand the behaviou...
In this work, the performance of five different fiber optic sensors at cryogenic temperatures has be...
In this work, the performance of five different fiber optic sensors at cryogenic temperatures has be...
Propagation time through standard optical fibres changes with temperature at a rate of 40ps/km/K. Th...
Up to now no comparison of radiation test results on optical fibers at room temperature and below 15...
Up to now no comparison of radiation test results on optical fibers at room temperature and below 15...
Environmental temperature fluctuations cause phase changes of the light propagating through optical ...
Radiation effects at cryogenic temperature are investigated in two radiation-tolerant Fluorine-doped...
We have measured the optical phase sensitivity of fiber based on poly(methyl methacrylate) under nea...
We present a simple technique to experimentally determine the optical-path length change with temper...
The thermal phase sensitivity of an optical fiber quantifies the degree to which a change in ambient...
We present a simple technique to experimentally determine the optical-path length change with temper...
Thanks to their characteristics, optical fiber sensors are an ideal solution for sensing application...
The thermomechanical behavior of a standard optical fiber with double coating is theoretically analy...
We show that optical fibers doped with as little as 7 mole% P2O5 have 27% lower temperature sensitiv...
A temperature sensor using single-mode tapered fiber is presented. To better understand the behaviou...
In this work, the performance of five different fiber optic sensors at cryogenic temperatures has be...
In this work, the performance of five different fiber optic sensors at cryogenic temperatures has be...
Propagation time through standard optical fibres changes with temperature at a rate of 40ps/km/K. Th...
Up to now no comparison of radiation test results on optical fibers at room temperature and below 15...
Up to now no comparison of radiation test results on optical fibers at room temperature and below 15...
Environmental temperature fluctuations cause phase changes of the light propagating through optical ...
Radiation effects at cryogenic temperature are investigated in two radiation-tolerant Fluorine-doped...
We have measured the optical phase sensitivity of fiber based on poly(methyl methacrylate) under nea...