Seguir
Ka Fai Mak
Ka Fai Mak
Dirección de correo verificada de mpq.mpg.de
Título
Citado por
Citado por
Año
Tunable vacuum-UV to visible ultrafast pulse source based on gas-filled Kagome-PCF
KF Mak, JC Travers, P Hölzer, NY Joly, PSJ Russell
Optics express 21 (9), 10942-10953, 2013
1982013
Supercontinuum generation in the vacuum ultraviolet through dispersive-wave and soliton-plasma interaction in a noble-gas-filled hollow-core photonic crystal fiber
A Ermolov, KF Mak, MH Frosz, JC Travers, PSJ Russell
Physical Review A 92 (3), 033821, 2015
1362015
Multi-mW, few-cycle mid-infrared continuum spanning from 500 to 2250 cm− 1
J Zhang, K Fai Mak, N Nagl, M Seidel, D Bauer, D Sutter, V Pervak, ...
Light: Science & Applications 7 (2), 17180-17180, 2018
1092018
Two techniques for temporal pulse compression in gas-filled hollow-core kagomé photonic crystal fiber
KF Mak, JC Travers, NY Joly, A Abdolvand, PSJ Russell
Optics letters 38 (18), 3592-3595, 2013
1062013
Compressing μJ-level pulses from 250 fs to sub-10 fs at 38-MHz repetition rate using two gas-filled hollow-core photonic crystal fiber stages
KF Mak, M Seidel, O Pronin, MH Frosz, A Abdolvand, V Pervak, ...
Optics letters 40 (7), 1238-1241, 2015
1002015
High‐power, high‐efficiency Tm: YAG and Ho: YAG thin‐disk lasers
J Zhang, F Schulze, KF Mak, V Pervak, D Bauer, D Sutter, O Pronin
Laser & Photonics Reviews 12 (3), 1700273, 2018
762018
Directly diode-pumped, Kerr-lens mode-locked, few-cycle Cr: ZnSe oscillator
N Nagl, S Gröbmeyer, V Pervak, F Krausz, O Pronin, KF Mak
Optics Express 27 (17), 24445-24454, 2019
582019
Broadband mid-infrared coverage (2–17 μm) with few-cycle pulses via cascaded parametric processes
Q Wang, J Zhang, A Kessel, N Nagl, V Pervak, O Pronin, KF Mak
Optics Letters 44 (10), 2566-2569, 2019
572019
Intra-pulse difference-frequency generation of mid-infrared (2.7–20 μm) by random quasi-phase-matching
J Zhang, K Fritsch, Q Wang, F Krausz, KF Mak, O Pronin
Optics letters 44 (12), 2986-2989, 2019
562019
Kerr-lens mode-locked 2-μm thin-disk lasers
J Zhang, KF Mak, O Pronin
IEEE Journal of Selected Topics in Quantum Electronics 24 (5), 1-11, 2018
502018
Efficient femtosecond mid-infrared generation based on a Cr: ZnS oscillator and step-index fluoride fibers
N Nagl, KF Mak, Q Wang, V Pervak, F Krausz, O Pronin
Optics letters 44 (10), 2390-2393, 2019
452019
Single-cycle infrared waveform control
P Steinleitner, N Nagl, M Kowalczyk, J Zhang, V Pervak, C Hofer, ...
Nature Photonics 16 (7), 512-518, 2022
342022
Multi-octave spanning, Watt-level ultrafast mid-infrared source
TP Butler, N Lilienfein, J Xu, N Nagl, C Hofer, D Gerz, KF Mak, C Gaida, ...
Journal of Physics: Photonics 1 (4), 044006, 2019
342019
Multiwatt level output powers from a tunable fiber optical parametric oscillator
YQ Xu, KF Mak, SG Murdoch
Optics letters 36 (11), 1966-1968, 2011
272011
Dual-comb thin-disk oscillator
K Fritsch, T Hofer, J Brons, M Iandulskii, KF Mak, Z Chen, N Picqué, ...
Nature Communications 13 (1), 2584, 2022
262022
Broadband, few-cycle mid-infrared continuum based on the intra-pulse difference frequency generation with BGSe crystals
J Zhang, Q Wang, J Hao, H Liu, J Yao, Z Li, J Liu, KF Mak
Optics Express 28 (25), 37903-37909, 2020
232020
Distributed Kerr lens mode-locked Yb: YAG thin-disk oscillator
J Zhang, M Pӧtzlberger, Q Wang, J Brons, M Seidel, D Bauer, D Sutter, ...
Ultrafast Science, 2022
202022
2/3 octave Si/SiO2 infrared dispersive mirrors open new horizons in ultrafast multilayer optics
V Pervak, T Amotchkina, Q Wang, O Pronin, KF Mak, M Trubetskov
Optics Express 27 (1), 55-62, 2019
142019
Generation of 220 fs, 20 W pulses at 2 μm from Kerr-lens mode-locked Ho: YAG thin-disk oscillator
J Zhang, KF Mak, S Gröbmeyer, D Bauer, D Sutter, V Pervak, F Krausz, ...
CLEO: Science and Innovations, SM1I. 6, 2017
122017
Synthesis, fabrication and characterization of a highly-dispersive mirrors for the 2 µm spectral range
T Amotchkina, M Trubetskov, F Habel, Y Pervak, J Zhang, KF Mak, ...
Optics Express 25 (9), 10234-10240, 2017
122017
El sistema no puede realizar la operación en estos momentos. Inténtalo de nuevo más tarde.
Artículos 1–20