Wavelength Tuning – tunable laser, broadband, tunability
Efficient tuning of the emission wavelength of various wideband laser crystals like Ti:sapphire, Yb:YAG, Yb:KGW as well as dye lasers and optical parametric
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Efficient tuning of the emission wavelength of various wideband laser crystals like Ti:sapphire, Yb:YAG, Yb:KGW as well as dye lasers and optical parametric
FemtoTune delivers a compact, high-repetition-rate (up to 100 kHz) solution with sub‑50 fs pulse duration across the broad wavelength tuning range, tailored for
Driven by a 100-W femtosecond pump and combining optical parametric amplification (OPA) with second-harmonic generation (SHG), we have realized a high-power source tunable from the
We present experimental demonstration and modeling of the optimization of a phase-sensitive optical parametric amplifier by tuning the relative position between the pump and signal beam waists along
Comparison of digital lock-in amplifier and fast fourier transform algorithms for quartz-tuning-fork enhanced spectroscopy Published: 12 September 2020 Volume 52, article number 417
WAVELENGTH-TUNABLE SOURCES ORPHEUS optical parametric amplifiers (OPAs) for Yb lasers provide the same UV to MIR wavelength tunability as TOPAS OPAs have done for the Ti:Sapphire
We report on an all-solid-state light source for nanosecond (ns) laser pulses, with broad tunability in the mid-infrared, spectral bandwidth close to the Fourier transform limit, and pulse
SOAs have high gain, so making a linear amplifier is quite difficult, there are several approaches that are used Physically tapered structure to reduce the intensity as the power increases
A simple, stable and inexpensive dual-output port widely tunable semiconductor optical amplifier (SOA)-based fiber compound-ring laser structure is demonstrated. This unique nested ring
The chapter is dedicated to the basics and key parameters of semiconductor optical amplifiers (SOAs). A general introduction to semiconductor gain media as well as theory of
Federico Vernuccio, Assia Benachir, Eric Michele Fantuzzi, Benoit Morel, Simone Bux, Erwann Martin, José Villanueva, Yoann Pertot, Nicolas Thiré, Sandro Heuke, Hervé Rigneault; Dual
An optical parametric amplifier, abbreviated OPA, is a laser light source that emits light of variable wavelengths by an optical parametric amplification process.
It discusses essential aspects like the need for phase matching, which determines the gain bandwidth and allows for wide wavelength tunability. The text covers typical pulsed operation, which allows for
The optical gain of halide perovskite films can be quantified by transient spectral absorption through photoexcitation and reported as high as 3200 ± 830 cm−1 , which suggests
In terms of power and conversion efficiency, the output has not yet reached saturation, and further increasing the pump power is expected to yield higher signal output power. By tuning the
Building on decades of expertise in optical parametric amplifiers, the I-OPA combines wavelength tunability with a robust industrial design. Integrated seamlessly into the CARBIDE or PHAROS
Optical amplification is defined as the process by which the intensity of a light beam increases as it passes through an amplifying medium, due to stimulated emission exceeding absorption losses,
Parametric generation was demonstrated shortly after the invention of lasers, leading to the development of optical parametric oscillators (OPOs) and optical