We introduce the concept of Doppler-assisted tomography (DAT) and show that it can be applied successfully to non-invasive imaging of the internal microstructure of a photonic crystal fiber. The fiber is spun at similar to 10 Hz around its axis and laterally illuminated with a laser beam. Monitoring the time-dependent Doppler shift of the light scattered by the hollow channels permits the azimuthal angle and radial position of individual channels to be measured. An inverse Radon transform is used to construct an image of the microstructure from the frequency-modulated scattered signal. We also show that DAT can image sub-wavelength features and monitor the structure along a tapered fiber, which is not possible using other techniques without...
We present a non-destructive technique for a combined evaluation of refractive index and active-dopa...
Abstract—Optical Doppler tomography (ODT) is an imaging modality that takes advantage of the short c...
We present a non-destructive optical technique for rare-earth-doped optical fiber preform inspection...
We introduce the concept of Doppler-assisted tomography (DAT) and show that it can be applied succes...
We introduce the concept of Doppler-assisted tomography (DAT) and show that it can be applied succes...
Using a non-destructive side-scattering technique, the internal structure of a microstructured fibre...
X-ray computational tomography is demonstrated as a powerful non-destructive tool to image the inter...
For the first time, a non-destructive technique for spatially resolving the location and relative co...
In this work, we present a quantitative (statistical) 3D morphological characterization of optical f...
A side-scattering technique for investigating the inner microstructure of photonic crystal fibers (P...
AbstractThe image of a translational target is moved by the Doppler-shifted phase of the diffraction...
Single-ring hollow-core photonic crystal fibers, consisting of a ring of one or two thin-walled glas...
Specialty optical fibers, in particular microstructured and multi-material optical fibers, have comp...
We present a non-destructive technique for a combined evaluation of refractive index and active-dopa...
Fourier Domain Optical Coherence Tomography FDOCT is a recent imaging technique based on the princip...
We present a non-destructive technique for a combined evaluation of refractive index and active-dopa...
Abstract—Optical Doppler tomography (ODT) is an imaging modality that takes advantage of the short c...
We present a non-destructive optical technique for rare-earth-doped optical fiber preform inspection...
We introduce the concept of Doppler-assisted tomography (DAT) and show that it can be applied succes...
We introduce the concept of Doppler-assisted tomography (DAT) and show that it can be applied succes...
Using a non-destructive side-scattering technique, the internal structure of a microstructured fibre...
X-ray computational tomography is demonstrated as a powerful non-destructive tool to image the inter...
For the first time, a non-destructive technique for spatially resolving the location and relative co...
In this work, we present a quantitative (statistical) 3D morphological characterization of optical f...
A side-scattering technique for investigating the inner microstructure of photonic crystal fibers (P...
AbstractThe image of a translational target is moved by the Doppler-shifted phase of the diffraction...
Single-ring hollow-core photonic crystal fibers, consisting of a ring of one or two thin-walled glas...
Specialty optical fibers, in particular microstructured and multi-material optical fibers, have comp...
We present a non-destructive technique for a combined evaluation of refractive index and active-dopa...
Fourier Domain Optical Coherence Tomography FDOCT is a recent imaging technique based on the princip...
We present a non-destructive technique for a combined evaluation of refractive index and active-dopa...
Abstract—Optical Doppler tomography (ODT) is an imaging modality that takes advantage of the short c...
We present a non-destructive optical technique for rare-earth-doped optical fiber preform inspection...