The recent emergence of bismuth-doped fiber amplifiers (BDFAs) offers the potential to transmit high-speed WDM signals over long distances in the O-band spectral region, thereby greatly enhancing the scope of systems utilizing these wavelengths. In this paper, we present a comprehensive experimental study on several basic characteristics of an O-band BDFA based on a phosphosilicate optical fiber, including the frequency-dependent noise figure, gain tilt (static and dynamic), transient response, and polarization dependent gain. We discuss our findings and their implications on the use of BDFA technology in high bit-rate multichannel systems.</p
Bismuth (Bi) -doped phosphosilicate fibers have been fabricated by the modified chemical vapor depos...
We report the development of a bismuth-doped fiber master oscillator power fiber amplifier system. T...
In this thesis, the characterisation of Bismuth based Erbium-doped Fibre Amplifier (Bi-EDFA) for Con...
Current optical transmission systems, based on erbium-doped fibre amplifier (EDFA) equipped waveleng...
In this article, we experimentally demonstrate an all-fiber optical amplifier using Bi-doped phospho...
Bismuth (Bi)-doped fibers provide great potential for developing optical amplifiers in the low-loss ...
In this Letter, we investigate and compare the gain and noise figure characteristics of bismuth (Bi)...
A Bismuth-doped fiber amplifier (BDFA) in a double-pass configuration is proposed and demonstrated. ...
We report a double-pass bismuth-doped fiber amplifier operating in the O-band with a 31dB gain and a...
The recent emergence of bismuth-doped fiber amplifiers (BDFAs) enables the reach extension of high-s...
We report an O-band BDFA gain and NF performance over the temperature-range of -40 to +60C. A 34dB g...
This paper reviews and discusses recent developments in O-band Bi-doped fibre amplifiers. We present...
We present a detailed characterisation of the emergent bismuth-doped fibre amplifier, characterising...
Bismuth (Bi)-doped fibers offer a great potential to develop fiber sources in the 1150-1800nm wavele...
We demonstrate WDM transmission on both a coarse and dense spacing over 100km and 120km of SMF-28e, ...
Bismuth (Bi) -doped phosphosilicate fibers have been fabricated by the modified chemical vapor depos...
We report the development of a bismuth-doped fiber master oscillator power fiber amplifier system. T...
In this thesis, the characterisation of Bismuth based Erbium-doped Fibre Amplifier (Bi-EDFA) for Con...
Current optical transmission systems, based on erbium-doped fibre amplifier (EDFA) equipped waveleng...
In this article, we experimentally demonstrate an all-fiber optical amplifier using Bi-doped phospho...
Bismuth (Bi)-doped fibers provide great potential for developing optical amplifiers in the low-loss ...
In this Letter, we investigate and compare the gain and noise figure characteristics of bismuth (Bi)...
A Bismuth-doped fiber amplifier (BDFA) in a double-pass configuration is proposed and demonstrated. ...
We report a double-pass bismuth-doped fiber amplifier operating in the O-band with a 31dB gain and a...
The recent emergence of bismuth-doped fiber amplifiers (BDFAs) enables the reach extension of high-s...
We report an O-band BDFA gain and NF performance over the temperature-range of -40 to +60C. A 34dB g...
This paper reviews and discusses recent developments in O-band Bi-doped fibre amplifiers. We present...
We present a detailed characterisation of the emergent bismuth-doped fibre amplifier, characterising...
Bismuth (Bi)-doped fibers offer a great potential to develop fiber sources in the 1150-1800nm wavele...
We demonstrate WDM transmission on both a coarse and dense spacing over 100km and 120km of SMF-28e, ...
Bismuth (Bi) -doped phosphosilicate fibers have been fabricated by the modified chemical vapor depos...
We report the development of a bismuth-doped fiber master oscillator power fiber amplifier system. T...
In this thesis, the characterisation of Bismuth based Erbium-doped Fibre Amplifier (Bi-EDFA) for Con...