A dual-core fiber in which one of the cores is doped with germanium and the other with phosphorus is used as an in-line Mach–Zehnder dispersive interferometer. By ensuring an equal length but with different dispersion dependencies in the interferometer arms (the two cores), high-sensitivity strain and temperature sensing are achieved. Opposite sensitivities for high and low wavelength peaks were also demonstrated when strain and temperature was applied. To our knowledge this is the first time that such behavior is demonstrated using this type of in-line interferometer based on a dual-core fiber. A sensitivity of 0.102 0.002 nm∕με, between 0 and 800 με and −4.2 0.2 nm∕°C between 47°C and 62°C is demonstrated.European Commission...
A simple Mach-Zehnder interferometer (MZI) based on a standard single-mode fiber for simultaneous st...
We present a relative sensitivity of in-fiber inter-cross demodulation of a Mach-Zehnder interferome...
We present a relative sensitivity of in-fiber inter-cross demodulation of a Mach-Zehnder interferome...
A dual-core fiber in which one of the cores is doped with germanium and the other with phosphorus is...
A dual-core fiber in which one of the cores is doped with germanium and the other with phosphorus is...
A dual-core fiber in which one of the cores is doped with germanium and the other with phosphorus is...
A dual-core fiber in which one of the cores is doped with germanium and the other with phosphorus is...
A dual-core fiber in which one of the cores is doped with Germanium and the other with Phosphorus is...
A dual-core fiber in which one of the cores is doped with Germanium and the other with Phosphorus is...
A dual-core fiber in which one of the cores is doped with Germanium and the other with Phosphorus is...
A dual-core fiber in which one of the cores is doped with Germanium and the other with Phosphorus is...
In this paper we present an all-fiber interferometric sensor for the simultaneous measurement of str...
In this paper we present an all-fiber interferometric sensor for the simultaneous measurement of str...
Simultaneous measurement of temperature and strain using multi-core fiber (MCF) with an in-line casc...
Simultaneous measurement of temperature and strain using multi-core fiber (MCF) with an in-line casc...
A simple Mach-Zehnder interferometer (MZI) based on a standard single-mode fiber for simultaneous st...
We present a relative sensitivity of in-fiber inter-cross demodulation of a Mach-Zehnder interferome...
We present a relative sensitivity of in-fiber inter-cross demodulation of a Mach-Zehnder interferome...
A dual-core fiber in which one of the cores is doped with germanium and the other with phosphorus is...
A dual-core fiber in which one of the cores is doped with germanium and the other with phosphorus is...
A dual-core fiber in which one of the cores is doped with germanium and the other with phosphorus is...
A dual-core fiber in which one of the cores is doped with germanium and the other with phosphorus is...
A dual-core fiber in which one of the cores is doped with Germanium and the other with Phosphorus is...
A dual-core fiber in which one of the cores is doped with Germanium and the other with Phosphorus is...
A dual-core fiber in which one of the cores is doped with Germanium and the other with Phosphorus is...
A dual-core fiber in which one of the cores is doped with Germanium and the other with Phosphorus is...
In this paper we present an all-fiber interferometric sensor for the simultaneous measurement of str...
In this paper we present an all-fiber interferometric sensor for the simultaneous measurement of str...
Simultaneous measurement of temperature and strain using multi-core fiber (MCF) with an in-line casc...
Simultaneous measurement of temperature and strain using multi-core fiber (MCF) with an in-line casc...
A simple Mach-Zehnder interferometer (MZI) based on a standard single-mode fiber for simultaneous st...
We present a relative sensitivity of in-fiber inter-cross demodulation of a Mach-Zehnder interferome...
We present a relative sensitivity of in-fiber inter-cross demodulation of a Mach-Zehnder interferome...