In fiber based Fabry-Pérot Cavities (FFPCs), limited spatial mode matching between the cavity mode and input/output modes has been the main hindrance for many applications. We have demonstrated a versatile mode matching method for FFPCs. Our novel design employs an assembly of a graded-index and large core multimode fiber directly spliced to a single mode fiber. This all-fiber assembly transforms the propagating mode of the single mode fiber to match with the mode of a FFPC. As a result, we have measured a mode matching of 90% for a cavity length of ~400 μm. This is a significant improvement compared to conventional FFPCs coupled with just a single mode fiber, especially at long cavity lengths. Adjusting the parameters of the assembly, the ...
We present and characterize fiber mirrors and a miniaturized ion-trap design developed to integrate ...
In this paper, we propose two different designs of micromachined Fabry-Pérot optical cavities, with...
We review our recent work toward designing large mode area fibers for high power applications. We sh...
In fiber based Fabry-Pérot Cavities (FFPCs), limited spatial mode matching between the cavity mode a...
In fiber based Fabry-Perot Cavities (FFPCs), limited spatial mode matching between the cavity mode a...
International audienceWe demonstrate fiber Fabry-Perot (FFP) cavities with concave mirrors that can ...
We present a systematic numerical study of Fabry-Perot optical cavities with Gaussian-shape mirrors ...
Novel monolithic fiber laser architectures utilizing large mode area (LMA) photonic crystal fiber (P...
Novel monolithic fiber laser architectures utilizing large mode area (LMA) photonic crystal fiber (P...
Novel monolithic fiber laser architectures utilizing large mode area (LMA) photonic crystal fiber (P...
Abstract. We have realized a fiber-based Fabry-Perot cavity with CO2 laser-machined mirrors. It comb...
Dataset to paper "Harnessing the mode mixing in optical fiber-tip cavities". Paper abstra...
Dataset to paper "Harnessing the mode mixing in optical fiber-tip cavities". Paper abstra...
Dataset to paper "Harnessing the mode mixing in optical fiber-tip cavities". Paper abstra...
We present a novel method of machining optical fiber surfaces with a CO2 laser for use in Fiber-base...
We present and characterize fiber mirrors and a miniaturized ion-trap design developed to integrate ...
In this paper, we propose two different designs of micromachined Fabry-Pérot optical cavities, with...
We review our recent work toward designing large mode area fibers for high power applications. We sh...
In fiber based Fabry-Pérot Cavities (FFPCs), limited spatial mode matching between the cavity mode a...
In fiber based Fabry-Perot Cavities (FFPCs), limited spatial mode matching between the cavity mode a...
International audienceWe demonstrate fiber Fabry-Perot (FFP) cavities with concave mirrors that can ...
We present a systematic numerical study of Fabry-Perot optical cavities with Gaussian-shape mirrors ...
Novel monolithic fiber laser architectures utilizing large mode area (LMA) photonic crystal fiber (P...
Novel monolithic fiber laser architectures utilizing large mode area (LMA) photonic crystal fiber (P...
Novel monolithic fiber laser architectures utilizing large mode area (LMA) photonic crystal fiber (P...
Abstract. We have realized a fiber-based Fabry-Perot cavity with CO2 laser-machined mirrors. It comb...
Dataset to paper "Harnessing the mode mixing in optical fiber-tip cavities". Paper abstra...
Dataset to paper "Harnessing the mode mixing in optical fiber-tip cavities". Paper abstra...
Dataset to paper "Harnessing the mode mixing in optical fiber-tip cavities". Paper abstra...
We present a novel method of machining optical fiber surfaces with a CO2 laser for use in Fiber-base...
We present and characterize fiber mirrors and a miniaturized ion-trap design developed to integrate ...
In this paper, we propose two different designs of micromachined Fabry-Pérot optical cavities, with...
We review our recent work toward designing large mode area fibers for high power applications. We sh...