Tadeusz Martynkien
Tadeusz Martynkien
Wroclaw University of Science and Technology,
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Cited by
Cited by
Highly birefringent microstructured fibers with enhanced sensitivity to hydrostatic pressure
T Martynkien, G Statkiewicz-Barabach, J Olszewski, J Wojcik, P Mergo, ...
Optics Express 18 (14), 15113-15121, 2010
Dispersion effects in elliptical-core highly birefringent fibers
W Urbanczyk, T Martynkien, WJ Bock
Applied Optics 40 (12), 1911-1920, 2001
Dispersion of group and phase modal birefringence in elliptical-core fiber measured by white-light spectral interferometry
P Hlubina, T Martynkien, W Urbańczyk
Optics Express 11 (22), 2793-2798, 2003
Effects of hydrostatic pressure on phase and group modal birefringence in microstructured holey fibers
M Szpulak, T Martynkien, W Urbanczyk
Applied optics 43 (24), 4739-4744, 2004
Experimental and theoretical investigations of birefringent holey fibers with a triple defect
M Szpulak, G Statkiewicz, J Olszewski, T Martynkien, W Urbańczyk, ...
Applied optics 44 (13), 2652-2658, 2005
Measurements of modal birefringence and polarimetric sensitivity of the birefringent holey fiber to hydrostatic pressure and strain
G Statkiewicz, T Martynkien, W Urbańczyk
Optics Communications 241 (4-6), 339-348, 2004
Dispersion-managed Ho-doped fiber laser mode-locked with a graphene saturable absorber
M Pawliszewska, T Martynkien, A Przewłoka, J Sotor
Optics Letters 43 (1), 38-41, 2018
Temperature and pressure sensitivities of the highly birefringent photonic crystal fiber with core asymmetry
T Nasilowski, T Martynkien, G Statkiewicz, M Szpulak, J Olszewski, ...
Applied Physics B 81, 325-331, 2005
High-power frequency comb source tunable from 2.7 to 4.2 μm based on difference frequency generation pumped by an Yb-doped fiber laser
G Soboń, T Martynkien, P Mergo, L Rutkowski, A Foltynowicz
Optics letters 42 (9), 1748-1751, 2017
Ultra-broadband dissipative soliton and noise-like pulse generation from a normal dispersion mode-locked Tm-doped all-fiber laser
G Sobon, J Sotor, T Martynkien, KM Abramski
Optics Express 24 (6), 6156-6161, 2016
Measurement of the group dispersion of the fundamental mode of holey fiber by white-light spectral interferometry
P Hlubina, M Szpulak, D Ciprian, T Martynkien, W Urbańczyk
Optics Express 15 (18), 11073-11081, 2007
Optical refractometer based on a birefringent Bragg grating written in an H-shaped fiber
O Frazăo, T Martynkien, JM Baptista, JL Santos, W Urbanczyk, J Wojcik
Optics letters 34 (1), 76-78, 2009
Modeling and measurement of temperature sensitivity in birefringent photonic crystal holey fibers
T Martynkien, M Szpulak, W Urbanczyk
Applied optics 44 (36), 7780-7788, 2005
All-polarization-maintaining, stretched-pulse Tm-doped fiber laser, mode-locked by a graphene saturable absorber
J Sotor, J Bogusławski, T Martynkien, P Mergo, A Krajewska, A Przewłoka, ...
Optics Letters 42 (8), 1592-1595, 2017
All-solid microstructured fiber with flat normal chromatic dispersion
T Martynkien, D Pysz, R Stępień, R Buczyński
Optics Letters 39 (8), 2342-2345, 2014
Experimental investigations of bending loss oscillations in large mode area photonic crystal fibers
T Martynkien, J Olszewski, M Szpulak, G Golojuch, W Urbanczyk, ...
Optics Express 15 (21), 13547-13556, 2007
Control over the pressure sensitivity of Bragg grating-based sensors in highly birefringent microstructured optical fibers
S Sulejmani, C Sonnenfeld, T Geernaert, P Mergo, M Makara, K Poturaj, ...
IEEE Photonics Technology Letters 24 (6), 527-529, 2012
All-fiber mid-infrared source tunable from 6 to 9 μm based on difference frequency generation in OP-GaP crystal
J Sotor, T Martynkien, PG Schunemann, P Mergo, L Rutkowski, G Soboń
Optics express 26 (9), 11756-11763, 2018
Generation of sub-100 fs pulses tunable from 1700 to 2100 nm from a compact frequency-shifted Er-fiber laser
G Soboń, T Martynkien, K Tarnowski, P Mergo, J Sotor
Photonics Research 5 (3), 151-155, 2017
Infrared supercontinuum generation in soft-glass photonic crystal fibers pumped at 1560 nm
G Sobon, M Klimczak, J Sotor, K Krzempek, D Pysz, R Stepien, ...
Optical Materials Express 4 (1), 7-15, 2014
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