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Photodetector. Outline Introduction Photoconductor Photodiode Avalanche photodiode Phototransistor.

Dec 19, 2015

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Page 1: Photodetector. Outline Introduction Photoconductor Photodiode Avalanche photodiode Phototransistor.

Photodetector

Page 2: Photodetector. Outline Introduction Photoconductor Photodiode Avalanche photodiode Phototransistor.

Outline

•Introduction

•Photoconductor

•Photodiode

•Avalanche photodiode

•Phototransistor

Page 3: Photodetector. Outline Introduction Photoconductor Photodiode Avalanche photodiode Phototransistor.

Introduction

Detection of photons means, the photons must interact with the detector by three processes:

1) Carrier generation by incident light

2) Carrier transport (with or without carrier multiplication)

3) Interaction of current with external circuit to provide the output signal

Page 4: Photodetector. Outline Introduction Photoconductor Photodiode Avalanche photodiode Phototransistor.

Photoconductor

•Slab of semiconductor with ohmic contacts

)( pnq pn

Page 5: Photodetector. Outline Introduction Photoconductor Photodiode Avalanche photodiode Phototransistor.

Photoconductor

Recombination of carrier

carrier lifetime

t

I

Page 6: Photodetector. Outline Introduction Photoconductor Photodiode Avalanche photodiode Phototransistor.

Photoconductor

Generation rate of carrier per unit volume

Photocurrent flowing between contacts

Primary photocurrent

Photocurrent gain

=

Page 7: Photodetector. Outline Introduction Photoconductor Photodiode Avalanche photodiode Phototransistor.

Photoconductor

Page 8: Photodetector. Outline Introduction Photoconductor Photodiode Avalanche photodiode Phototransistor.

Photoconductor

•Detectivity

•A=area of detector•B=bandwidth•NEP=noise equivalent power

Page 9: Photodetector. Outline Introduction Photoconductor Photodiode Avalanche photodiode Phototransistor.

Photodiode

• pn-junction diode

• Metal-semiconductor diode (Schottky diode)

• (Heterojunction diode)

Page 10: Photodetector. Outline Introduction Photoconductor Photodiode Avalanche photodiode Phototransistor.

pn-photodiode

)/(24.1

)(WA

m

P

IR

opt

p

•Responsivity 1–Antireflective coating, minimize reflection

–SiO2-Si interface (if silicon), effect

short wavelength responsivity

–Effective depth of device (effect long Wavelength responsivity)

•Internal quantum efficiency

•External quantum effiency–Include optical properties: Reflection, absorption and transmission

•Responsivity 2

Page 11: Photodetector. Outline Introduction Photoconductor Photodiode Avalanche photodiode Phototransistor.

pn-photodiode

Page 12: Photodetector. Outline Introduction Photoconductor Photodiode Avalanche photodiode Phototransistor.

Schottky diode

Thin metal (~100Å) on a semiconductor surface

Page 13: Photodetector. Outline Introduction Photoconductor Photodiode Avalanche photodiode Phototransistor.

Schottky diode

a,b,c pn-junction

d,e,f schottky-junction

Page 14: Photodetector. Outline Introduction Photoconductor Photodiode Avalanche photodiode Phototransistor.

Avalanche photodiode

•Operated at high reverse bias voltage where avalanche multiplication occur.•Problem to achieve uniform avalanche multiplication in entire light sensitive area

Page 15: Photodetector. Outline Introduction Photoconductor Photodiode Avalanche photodiode Phototransistor.

Phototransistor

•High gain through the transistor action•Slower response-time compared with photodiode

–pn-diode 0.01us–Ph-trans. 5 us–Ph darlington 50 us