activity
20182020
most citedQ-switched Dy:ZBLAN fiber lasers beyond 3 μm: comparison of pulse generation using acousto-optic modulation and inkjet-printed black phosphorus

67 citations · 154 across the 3 of their papers we have counts for

collaborators

8 papers

physics.optics2020

Dysprosium mid-infrared lasers: current status and future prospects

R. I. Woodward, M. R. Majewski, S. D. Jackson

With growing interest in the mid-infrared spectral region, dysprosium has recently been revisited for efficient high-performance infrared source development. Despite historically r…

physics.optics201956 cited

Mode-locked and tunable fiber laser at the 3.5 m band using frequency-shifted feedback

Ori Henderson-Sapir, Nathaniel Bawden, Matthew R. Majewski +3

We report on a mid-infrared mode-locked fiber laser that uses an acousto-optic tunable filter to achieve frequency-shifted feedback pulse generation with frequency tuning over a 21…

physics.optics201931 cited

Ultrafast mid-infrared fiber laser mode-locked using frequency-shifted feedback

M. R. Majewski, R. I. Woodward, S. D. Jackson

We demonstrate ultrashort pulse generation from a fluoride fiber laser co-doped with holmium and praseodymium. To date the majority of work focused on short pulse generation from t…

physics.optics201967 cited

Q-switched Dy:ZBLAN fiber lasers beyond 3 μm: comparison of pulse generation using acousto-optic modulation and inkjet-printed black phosphorus

R. I. Woodward, M. R. Majewski, N. Macadam +4

We report high-energy mid-infrared pulse generation by Q-switching of dysprosium-doped fiber lasers for the first time. Two different modulation techniques are demonstrated. Firstl…

physics.optics2018

Mode-locked dysprosium fiber laser: picosecond pulse generation from 2.97 to 3.30 μm

R. I. Woodward, M. R. Majewski, S. D. Jackson

Mode-locked fiber laser technology to date has been limited to sub-3 μm wavelengths, despite significant application-driven demand for compact picosecond and femtosecond pulse sour…

physics.optics2018

Emission beyond 4 μm and mid-infrared lasing in a dysprosium-doped indium fluoride (InF3) fiber

M. R. Majewski, R. I. Woodward, J. -Y. Carreé +3

Optical emission from rare-earth-doped fluoride fibers has thus far been limited to less than 4 μm. We extend emission beyond this limit by employing an indium fluoride (InF3) glas…