jean charles jacques – sébastien bax – nicolas cortès

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Jean Charles Jacques – Sébastien Bax – Nicolas Cortès 07/01/2008 CO2 Lasers Theory & Conception

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Jean Charles Jacques – Sébastien Bax – Nicolas Cortès. CO2 Lasers Theory & Conception. 07/01/2008. Contents. Introduction. 1. 1. CO 2 Lasers Theory. 2. Low power CO 2 lasers. 3. High power CO 2 lasers. 4. 5. Conclusion. 5. 1. Introduction. 1. - PowerPoint PPT Presentation

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Page 1: Jean Charles Jacques – Sébastien Bax – Nicolas Cortès

Jean Charles Jacques – Sébastien Bax – Nicolas Cortès

07/01/2008

CO2 Lasers

Theory & Conception

Page 2: Jean Charles Jacques – Sébastien Bax – Nicolas Cortès

Contents

CO2 Lasers Theory

11

2

Introduction

3

1

5

Low power CO2 lasers

High power CO2 lasers

Conclusion

4

5

Page 3: Jean Charles Jacques – Sébastien Bax – Nicolas Cortès

Introduction1

2

10.6 µm in the Infrared wavelengths

Continuous power capability

High efficiency

Power from some tens of W to few tens of KW

Page 4: Jean Charles Jacques – Sébastien Bax – Nicolas Cortès

3

2

hvk )21(Ev

BhcJJ )1(Ej

Vibration levels; Energy Storage

Bending mode

Symmetric Stretching mode

Asymmetric Stretching mode

Vibrational energy:

Rotational energy:

CO2 Lasers Theory

Page 5: Jean Charles Jacques – Sébastien Bax – Nicolas Cortès

4

2 CO2 Lasers Theory

Transfer collision

E=2meV<25meV

Active medium compositionCO2: 10-20%

N2: 10-20%

He: 60-80%

Page 6: Jean Charles Jacques – Sébastien Bax – Nicolas Cortès

Low power CO2 Laser3

5

Sealed CO2 Laser

Regeneration of CO into CO2

Infrared specific optic

Brewster angled windows

DC Discharge

Low power output

Small size for a CO2 laser

No heavy cost and maintenance

Page 7: Jean Charles Jacques – Sébastien Bax – Nicolas Cortès

Low power CO2 Laser3

6

Waveguide CO2 Laser

Very small BeO waveguide

High pressure active medium

Brewster angled windows

Radiofrequency pumping

Yield up to 20% higher than others classical CO2 laser

High-quality beam

Page 8: Jean Charles Jacques – Sébastien Bax – Nicolas Cortès

4 High power CO2 Laser

Fast axial flow lasers

Increase gas flow

Heat exchanger

Convection

1 kW/m

Page 9: Jean Charles Jacques – Sébastien Bax – Nicolas Cortès

4 High power CO2 Laser

Fast transverse flow lasers

Gas flow controlled by a turbine (100 Torr)

The laser beam crosses the cavity many times

10 kW/m

Poorer beam quality than axial flow lasers

Page 10: Jean Charles Jacques – Sébastien Bax – Nicolas Cortès

4 High power CO2 Laser

TEA lasers

Transverse excited atmosphere lasers

Electric discharge : few tens of kV

10 atm : broadering effects

10 MW

Page 11: Jean Charles Jacques – Sébastien Bax – Nicolas Cortès

Conclusion

Wide range of lasers design and outputs spectrum

Low power, High power

Pulsed or continuous mode

Many fields of application Dominate the cutting and welding business

Lower costs than YAG lasers

Infrared wavelength useful in surgery

Military range finding using LIDAR techniques

5

Page 12: Jean Charles Jacques – Sébastien Bax – Nicolas Cortès