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1
Introduction
2
Applications
3
Existing imaging modalities
4
Photoacoustic Airborne Sonar
5
Laser
6
Ultrasound Transducers
7
Frequency Response
8
Questions
9
Vibrations
10
Multiple ultrasound frequencies
11
Experimental results
12
Receiver height
13
Advantages
14
Scaling
15
Frequency
16
Size
17
Imaging
18
Challenges
Description:
Explore a groundbreaking underwater imaging technology in this research seminar on the Photoacoustic Airborne Sonar System (PASS). Discover how PASS bridges the gap between electromagnetic imaging in air and sonar imaging in water, potentially revolutionizing large-scale underwater mapping. Learn about the system's components, including laser-induced photoacoustic effects and high-sensitivity airborne ultrasonic detection. Understand the limitations of current underwater imaging techniques and how PASS aims to overcome them. Delve into the technical aspects of the system, including frequency response, experimental results, and scaling challenges. Gain insights from Stanford University researchers Aidan Fitzpatrick and Ajay Singhvi as they present their work on this innovative technology that could significantly expand our ability to image and map the world's oceans.

A Photoacoustic Airborne Sonar System

Paul G. Allen School
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