Computed
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Energy-conversion spectro-ana...
Other fiber-optical devices
Gratings
Thermooptical and phototherma...
Polymers and organics
Fabrication, cladding, and sp...
Piezo-, elasto-, and acoustoo...
Metals and metallic alloys
Sensors, gyros
Optical properties of bulk ma...
Fiber optics
Sensors ; remote sensing
Chemisorption/physisorption: ...
Optical frequency converters
Instruments for strain, force...
Nondestructive testing: optic...
Thermal instruments and appar...
Fiber waveguides, couplers, a...
Industrial applications
Methods of materials synthesi...
1.
Yuan Wu; Khan Lutful; Webb David J.; Kalli Kyriacos; Rasmussen Henrik K.; Stefani Alessio; Bang Ole
Humidity insensitive TOPAS polymer fiber Bragg grating sensor
2.
Allsop Thomas; Kalli Kyriacos; Zhou Kaiming; Smith Graham N.; Komodromos Michael; Petrovic Jovana; Webb David J.; Bennion Ian
Spectral characteristics and thermal evolution of long-period gratings in photonic crystal fibers fabricated with a near-IR radiation femtosecond laser using point-by-point inscription
3.
Smith G.N.; Allsop T.; Kalli K.; Koutsides C.; Neal R.; Sugden K.; Culverhouse P.; Bennion I.
Characterisation and performance of a Terfenol-D coated femtosecond laser inscribed optical fibre Bragg sensor with a laser ablated microslot for the detection of static magnetic fields
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4.
Koutsides C.; Kalli K.; Webb D. J.; Zhang L.
Characterizing femtosecond laser inscribed Bragg grating spectra
5.
Geernaert Thomas; Kalli Kyriacos; Koutsides Charalambos; Komodromos Michael; Nasilowski Tomasz; Urbanczyk Waclaw; Wojcik Jan; Berghmans Francis; Thienpont Hugo
Point-by-point fiber Bragg grating inscription in free-standing step-index and photonic crystal fibers using near-IR femtosecond laser
6.
Kalli K.; Geernaert T.; Koutsides C.; Komodromos M.; Nasilowski T.; Urbanczyk W.; Wojcik J.; Berghmans F.; Thienpont H.
Point-by-point Bragg grating inscription in single-mode microstructure fibre using NIR femtosecond laser
7.
Chen X.; Zhang C.; Webb D. J.; Suo R.; Peng G. D.; Kalli K.
Optical bend sensor for vector curvature measurement based on Bragg grating in eccentric core polymer optical fibre
8.
Berghmans F.; Kalli K.; Vlekken J.; Webb D. J.; Rayss J.; Urbanczyk W.; Dubruel P.; Van Daele P.; Thienpont H.; Sugden K.
Photonic skins for optical sensing: highlights of the PHOSFOS Project
9.
Allsop T.; Zhou K.; Kalli K.; Smith G.; Komodromos M.; Sugden K.; Dubov M.; Webb D. J.; Bennion I.
Comparison between femtosecond laser and fusion-arc inscribed long period gratings in photonic crystal fibre
10.
Allsop T.; Neal R.; Kalli K.; Davies E. M.; Rehman S.; Maier R. R. J.; Barton J.; Jones J. D.; Webb D. J.; Bennion I.
The exploitation of thin film coatings for fibre sensors for the application of chemical sensing
11.
Allsop T.; Neal R.; Mou C.; Brown P.; Saied S.; Rehman S.; Kalli K.; Webb D. J.; Sullivan J.; Mapps D.; Bennion I.
Exploitation of multilayer coatings for infrared surface plasmon resonance fiber sensors
12.
Carroll Karen E.; Zhang Chi; Webb David J.; Kalli Kyriacos; Argyros Alexander; Large Maryanne C.
Thermal response of Bragg gratings in PMMA microstructured optical fibers
13.
Kalli K.; Themistos C.; Carroll K.; Komodromos M.; Peng G. D.; Fang Q.; Dobb H. L.; Webb D. J.; Boyd I. W.
Electrically tunable Bragg gratings in single-mode polymer optical fiber
14.
Dobb Helen; Large Maryanne C. J.; Argyros Alexander; Kalli Kyriacos; Webb David J.; van Eijkelenborg Martijn A.
Continuous wave ultraviolet light-induced fiber Bragg gratings in few- and single-mode microstructured polymer optical fibers
15.
Kalli K.; Othonos A.; Christofides C.
Characterization of reflectivity inversion, α- and β-phase transitions and nanostructure formation in hydrogen activated thin Pd films on silicon based substrates
16.
Othonos Andreas; Kalli Kyriacos; Kohnke Glenn E.
Fiber Bragg Gratings: Fundamentals and Applications in Telecommunications and Sensing
17.
Kalli K.; Othonos A.; Christofides C.; Tardiff F.
Nondestructive evaluation of metal contaminated silicon wafers using radiometric measurements
18.
Photothermal radiometric measurements on metal contaminated silicon wafers
19.
Thermal wave hydrogen gas sensor characterized via photothermal deflection measurements
20.
Kalli K.; Othonos A.; Christofides C.; Spetz A.; Lundström I.
Room temperature hydrogen gas detection with optically thin palladium films on silicon oxide using photomodulated thermoreflectance
21.
Kalli Kyriacos; Othonos Andreas; Christofides Constantinos; Lloyd Spetz Anita; Lundström Ingemar
Temperature-induced reflectivity changes and activation of hydrogen sensitive optically thin palladium films on silicon oxide
22.
Kalli K.; Spetz A.; Christofides C.; Othonos A.; Lundström I.
Photomodulated thermoreflectance detection of hydrogen gas using optically thin palladium film on silicon oxide
23.
Kalli Kyriacos; Othonos Andreas; Christofides Constantinos
Hydrogen gas detection via photothermal deflection measurement
24.
Brady G. P.; Kalli Kyriacos; Webb David J.; Jackson David A.; Zhang Lin; Bennion Ian
Recent developments in optical fiber sensing using fiber Bragg gratings
25.
Kalli K.; Zhang L.; Jackson D. A.; Webb D. J.; Brady G. P.; Bennion I.
Wavelength‐division and spatial multiplexing using tandem interferometers for Bragg grating sensor networks
26.
Brady G. P.; Kalli Kyriacos; Webb David J.; Reekie Laurence; Archambault Jean-Luc; Jackson David A.
Simultaneous interrogation of interferometric and Bragg grating sensors
27.
Kalli Kyriacos; Brady G. P.; Webb David J.; Jackson David A.; Reekie Laurence; Archambault Jean-Luc
Possible approach for the simultaneous measurement of temperature and strain via first- and second-order diffraction from Bragg grating sensors
28.
Brady G.; Kalli K.; Webb D. J.; Jackson D. A.; Reekie L.; Archambault J. L.
29.
Kalli Kyriacos; Jackson David A.
Dynamic response of an all-fiber ring resonator to a time-varying input signal
30.
Kalli K.; Jackson D. A.
Analysis of the dynamic response of a ring resonator to a time‐varying input signal
31.
Tunable fiber frequency shifter utilizing an all-fiber ring resonator
32.
Tunable fiber frequency shifter that uses an all‐fiber ring resonator
33.
Ring resonator optical spectrum analyzer with 20‐kHz resolution
34.
Kalli K.; Culverhouse D. O.; Jackson D. A.
Fiber frequency shifter based on generation of stimulated Brillouin scattering in high‐finesse ring resonators
11
Jackson, David A.
9
Othonos, Andreas
Webb, David J.
8
Christofides, Constantinos
7
Bennion, Ian
5
Allsop, Thomas
Komodromos, M
3
Urbanczyk, Waclaw
Thienpont, Hugo
Lundström, Ingemar
Berghmans, Francis
Reekie, Laurence
Sugden, Kate
Neal, Ron
2
Peng, Gang-Ding