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Krzysztof Abramski
Krzysztof Abramski
Wroclaw University of Science andTechnology
Email verificata su pwr.edu.pl
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Citata da
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Anno
Graphene oxide vs. reduced graphene oxide as saturable absorbers for Er-doped passively mode-locked fiber laser
G Sobon, J Sotor, J Jagiello, R Kozinski, M Zdrojek, M Holdynski, ...
Optics express 20 (17), 19463-19473, 2012
5042012
Ultrafast thulium-doped fiber laser mode locked with black phosphorus
J Sotor, G Sobon, M Kowalczyk, W Macherzynski, P Paletko, KM Abramski
Optics letters 40 (16), 3885-3888, 2015
4182015
Black phosphorus saturable absorber for ultrashort pulse generation
J Sotor, G Sobon, W Macherzynski, P Paletko, KM Abramski
Applied Physics Letters 107 (5), 2015
3702015
Mode-locking in Er-doped fiber laser based on mechanically exfoliated Sb2Te3 saturable absorber
J Sotor, G Sobon, W Macherzynski, P Paletko, K Grodecki, KM Abramski
Optical materials express 4 (1), 1-6, 2013
2612013
Mode-locked erbium-doped fiber laser based on evanescent field interaction with Sb2Te3 topological insulator
J Sotor, G Sobon, K Grodecki, KM Abramski
Applied Physics Letters 104 (25), 2014
2002014
Sub-130 fs mode-locked Er-doped fiber laser based on topological insulator
J Sotor, G Sobon, KM Abramski
Optics express 22 (11), 13244-13249, 2014
1942014
Passive harmonic mode-locking in Er-doped fiber laser based on graphene saturable absorber with repetition rates scalable to 2.22 GHz
G Sobon, J Sotor, KM Abramski
Applied Physics Letters 100 (16), 2012
1932012
Power scaling of large‐area transverse radio frequency discharge CO2 lasers
KM Abramski, AD Colley, HJ Baker, DR Hall
Applied Physics Letters 54 (19), 1833-1835, 1989
1891989
Harmonically mode-locked Er-doped fiber laser based on a Sb2Te3 topological insulator saturable absorber
J Sotor, G Sobon, W Macherzynski, KM Abramski
Laser Physics Letters 11 (5), 055102, 2014
1582014
Thulium-doped all-fiber laser mode-locked by CVD-graphene/PMMA saturable absorber
G Sobon, J Sotor, I Pasternak, A Krajewska, W Strupinski, KM Abramski
Optics express 21 (10), 12797-12802, 2013
1452013
All-polarization maintaining femtosecond Er-doped fiber laser mode-locked by graphene saturable absorber
G Sobon, J Sotor, KM Abramski
Laser Physics Letters 9 (8), 581, 2012
1452012
The influence of process parameters on the laser-induced coloring of titanium
AJ Antończak, B Stępak, PE Kozioł, KM Abramski
Applied Physics A 115 (3), 1003-1013, 2014
1172014
Laser-induced colour marking—Sensitivity scaling for a stainless steel
AJ Antończak, D Kocoń, M Nowak, P Kozioł, KM Abramski
Applied Surface Science 264, 229-236, 2013
1092013
10 GHz passive harmonic mode-locking in Er–Yb double-clad fiber laser
G Sobon, K Krzempek, P Kaczmarek, KM Abramski, M Nikodem
Optics Communications 284 (18), 4203-4206, 2011
1082011
Multilayer graphene-based saturable absorbers with scalable modulation depth for mode-locked Er-and Tm-doped fiber lasers
G Sobon, J Sotor, I Pasternak, A Krajewska, W Strupinski, KM Abramski
Optical Materials Express 5 (12), 2884-2894, 2015
1072015
Compact all-fiber figure-9 dissipative soliton resonance mode-locked double-clad Er: Yb laser
K Krzempek, J Sotor, K Abramski
Optics letters 41 (21), 4995-4998, 2016
1042016
Linearly polarized, Q-switched Er-doped fiber laser based on reduced graphene oxide saturable absorber
G Sobon, J Sotor, J Jagiello, R Kozinski, K Librant, M Zdrojek, L Lipinska, ...
Applied Physics Letters 101 (24), 2012
962012
All-fiber Ho-doped mode-locked oscillator based on a graphene saturable absorber
J Sotor, M Pawliszewska, G Sobon, P Kaczmarek, A Przewolka, ...
Optics Letters 41 (11), 2592-2595, 2016
952016
Graphene oxide paper as a saturable absorber for Er-and Tm-doped fiber lasers
J Boguslawski, J Sotor, G Sobon, R Kozinski, K Librant, M Aksienionek, ...
Photonics Research 3 (4), 119-124, 2015
912015
All-polarization maintaining, graphene-based femtosecond Tm-doped all-fiber laser
G Sobon, J Sotor, I Pasternak, A Krajewska, W Strupinski, KM Abramski
Optics express 23 (7), 9339-9346, 2015
912015
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
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