In this paper, we present the broadband optical amplification in bismuth-doped germanate glass, at the second telecommunication window when excited with 808 nm and 980 nm laser diodes, respectively. The amplification range is from 1272 nm to 1348 nm wavelength, which is within the O-band of silica fiber communication. This bismuth-doped glass can be used as ultra broadband amplification material for wavelength-division-multiplexing (WDM) at the second telecommunication window
The paper presents the measurement and calculation of the optical amplifier gain and the optimal len...
Bismuth (Bi)-doped fibers offer a great potential to develop fiber sources in the 1150-1800nm wavele...
Bismuth (Bi)-doped optical fibers are of great interest because of the broad luminescence offered by...
The broadband luminescence covering 1.2-1.6 mu m was observed from bismuth and aluminum co-doped ger...
New broadband near infrared luminescence covering the whole work windows (1260-1625 nm) of the curre...
In this paper we present the development process of glass based on bismuth and aluminum co-dopedgerm...
We demonstrate the capability for amplification of picosecond pulses in two bismuth-doped alumosilic...
In this paper we present the development process of glass based on bismuth and aluminum co-doped ge...
Abstract Bi-doped glasses and optical fibers are extensively studied since they present broadband op...
Bismuth-based erbium-doped fiber (Bi-EDF) is demonstrated as an alternative medium for optical ampli...
Bismuth-based EDF (Bi-EDF) is comprehensively studied as an alternative medium for optical amplifica...
The paper presents the calculation of the planar optical amplifier gain and the optimal length of th...
Bismuth (Bi) doped fibers have shown promising potential for lasers and amplifiers in the 1150-1500 ...
We report near infrared broadband emission of bismuth-doped barium-aluminum-borate glasses. The broa...
Bismuth (Bi)-doped fibers provide great potential for developing optical amplifiers in the low-loss ...
The paper presents the measurement and calculation of the optical amplifier gain and the optimal len...
Bismuth (Bi)-doped fibers offer a great potential to develop fiber sources in the 1150-1800nm wavele...
Bismuth (Bi)-doped optical fibers are of great interest because of the broad luminescence offered by...
The broadband luminescence covering 1.2-1.6 mu m was observed from bismuth and aluminum co-doped ger...
New broadband near infrared luminescence covering the whole work windows (1260-1625 nm) of the curre...
In this paper we present the development process of glass based on bismuth and aluminum co-dopedgerm...
We demonstrate the capability for amplification of picosecond pulses in two bismuth-doped alumosilic...
In this paper we present the development process of glass based on bismuth and aluminum co-doped ge...
Abstract Bi-doped glasses and optical fibers are extensively studied since they present broadband op...
Bismuth-based erbium-doped fiber (Bi-EDF) is demonstrated as an alternative medium for optical ampli...
Bismuth-based EDF (Bi-EDF) is comprehensively studied as an alternative medium for optical amplifica...
The paper presents the calculation of the planar optical amplifier gain and the optimal length of th...
Bismuth (Bi) doped fibers have shown promising potential for lasers and amplifiers in the 1150-1500 ...
We report near infrared broadband emission of bismuth-doped barium-aluminum-borate glasses. The broa...
Bismuth (Bi)-doped fibers provide great potential for developing optical amplifiers in the low-loss ...
The paper presents the measurement and calculation of the optical amplifier gain and the optimal len...
Bismuth (Bi)-doped fibers offer a great potential to develop fiber sources in the 1150-1800nm wavele...
Bismuth (Bi)-doped optical fibers are of great interest because of the broad luminescence offered by...