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SMC - 14 Erbium Doped Fibre Amplifier


Topics

Fibre Coupled Diode Laser
Optical Pumping
ASE Spectrum
Optical Gain
Spectrum Analyzer
Emission Spectrum
Fibre Laser
Computer Control
 

Basic Concept

Optical fibre amplifiers have revolutionised optical fibre networks. The main reason for the strong impact that they have had and will have on data communication is that they are unique in simultaneous amplification of optical signals with different rates or data formats over a broad spectral region. When using optical amplifiers instead of semiconductor amplifiers, one can remove the barrier of narrow and fixed bandwidth of electrical repeater. Among different types of optical fibre amplifier nowadays the EDFA is the most commonly used. The basic principle of this rapidly growing technique is the optical pumping of a material with which optical fibres can be doped. Lasers and optical pumping of doped materials reach far back to the roots of the early laser techniques, for example the Nd doped YAG laser and amplifier. This and the fact that a great variety of physical aspects, combined with practical training with lasers and optical fibres, makes this experiment a valuable tool for the education of students as well as teachers, since this technique is still very young, but nevertheless belongs to one of the most important ones of this century.


Experimental Set-up

Within this experimental set-up, an Erbium doped fibre is optically pumped by a laser diode which emits a wavelength of 980 nm. The pump, as well as signal radiation, is coupled via a wavelength division multiplexer (WDM) to the Erbium doped fibre (EDF).
The exit of the EDF is connected to a fibre telescope (FT-01) which generates an almost parallel output beam. By means of the RG1000 filter (F1), the pump radiation is blocked in such a way that the subsequent beam consists only of radiation with a wavelength above 1.2 µm. The so filtered radiation is tranferred back by fibre telescope (FT-02) and can be connected either to the photodetector or optical multichannel analyzer slot-in module.

 
 
Required Equipment
 

Cat. No.

Qty.

Description

04.0219

1

Set of six SM fibre patch cable, 0.5 m

08.0010

1

SMC Base unit 12 WU

08.0310

1

SMC Wavelength division multiplexer 980/1550 nm, 1WU

08.0410

1

SMC Erbium doped fibre slot-in module, 1WU

08.0560

1

SMC Fibre coupled Diode Laser 980 nm 80 mW, 1WU

08.0565

1

SMC Fibre coupled Diode Laser 1.550 nm 5 mW, 1WU

08.0620

1

SMC Fibre coupled Si PIN photodetector, 1WU

08.0630

1

SMC Fibre coupled InGaAs photodetector, 1WU

08.0710

1

SMC Base Unit MK-1, 2WU

08.0720

1

SMC Digital frequency generator, 1WU

Required Options:

19.0140

1

Dual trace oscilloscope 100 MHz

Options:

 

 

08.0740

1

SMC Optical multi-channel analyzer OMA, 3WU

09.4142

1

Beam handling module