Until now, the field of mid-infrared fiber laser research has been constrained by the limitation imposed by the Stokes efficiency limit. The conversion of high-power diode light emission operating at near-infrared wavelengths into mid-infrared light invariably results in the deposition of significant amounts of heat in the fiber. This issue is compounded by the fact that mid-infrared transmitting glasses are thermomechanically weak, which means scaling the output power has been a longstanding challenge. In this report, we show that by cascading the adjacent transitions of the erbium ion at 2.8 and 1.6 μm in combination with a low-loss fluoride fiber, the slope efficiency for emission at 2.8 μm can reach 50%, thus exceeding the Stokes limit ...
We present recent demonstrations of fiber oscillators and amplifiers based on erbium-and dysprosium-...
We present recent demonstrations of fiber oscillators and amplifiers based on erbium-and dysprosium-...
Efficient continuous-wave laser operation at 2.982 μm is achieved with a Dy3:fluoride fiber pumped u...
The current state of the art in mid-infrared fiber laser research is reviewed. The relevant glass an...
The current state of the art in mid-infrared fiber laser research is reviewed. The relevant glass an...
The performance of mid-infrared fiber lasers based on erbium has improved dramatically during the la...
The current state of the art in mid-infrared fiber laser research is reviewed. The relevant glass an...
The quest for a compact and efficient broadband laser source able to probe the numerous fundamental ...
We demonstrate a fiber laser emitting 497fs pulses near 3μ m using a mid-IR transparent fluoride fib...
The quest for a compact and efficient broadband laser source able to probe the numerous fundamental ...
The recent demonstrations of ultrafast mid-infrared fiber lasers emitting sub-picosecond pulses at 2...
There is an urgent need for efficient and compact sources of coherent mid-infrared wavelength radiat...
Efficient continuous-wave laser operation at 2.982 μm is achieved with a Dy3:fluoride fiber pumped u...
Efficient continuous-wave laser operation at 2.982 μm is achieved with a Dy3:fluoride fiber pumped u...
We present recent demonstrations of fiber oscillators and amplifiers based on erbium-and dysprosium-...
We present recent demonstrations of fiber oscillators and amplifiers based on erbium-and dysprosium-...
We present recent demonstrations of fiber oscillators and amplifiers based on erbium-and dysprosium-...
Efficient continuous-wave laser operation at 2.982 μm is achieved with a Dy3:fluoride fiber pumped u...
The current state of the art in mid-infrared fiber laser research is reviewed. The relevant glass an...
The current state of the art in mid-infrared fiber laser research is reviewed. The relevant glass an...
The performance of mid-infrared fiber lasers based on erbium has improved dramatically during the la...
The current state of the art in mid-infrared fiber laser research is reviewed. The relevant glass an...
The quest for a compact and efficient broadband laser source able to probe the numerous fundamental ...
We demonstrate a fiber laser emitting 497fs pulses near 3μ m using a mid-IR transparent fluoride fib...
The quest for a compact and efficient broadband laser source able to probe the numerous fundamental ...
The recent demonstrations of ultrafast mid-infrared fiber lasers emitting sub-picosecond pulses at 2...
There is an urgent need for efficient and compact sources of coherent mid-infrared wavelength radiat...
Efficient continuous-wave laser operation at 2.982 μm is achieved with a Dy3:fluoride fiber pumped u...
Efficient continuous-wave laser operation at 2.982 μm is achieved with a Dy3:fluoride fiber pumped u...
We present recent demonstrations of fiber oscillators and amplifiers based on erbium-and dysprosium-...
We present recent demonstrations of fiber oscillators and amplifiers based on erbium-and dysprosium-...
We present recent demonstrations of fiber oscillators and amplifiers based on erbium-and dysprosium-...
Efficient continuous-wave laser operation at 2.982 μm is achieved with a Dy3:fluoride fiber pumped u...