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Material ejection in Q-switched Er:YAG laser ablation of water, liver, and skin
Ingo Apitz,
Alfred Vogel
*
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Corresponding author for this work
Institute of Biomedical Optics
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Dive into the research topics of 'Material ejection in Q-switched Er:YAG laser ablation of water, liver, and skin'. Together they form a unique fingerprint.
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Engineering
Vaporization
100%
Deep Layer
66%
Nonequilibrium
66%
Pulse Duration
33%
Nanosecond
33%
Induced Stress
33%
Peak Temperature
33%
Great Importance
33%
Liquid Volume
33%
Biomolecule
33%
Ablation Efficiency
33%
Target Material
33%
Superficial Liquid
33%
Phase Explosion
33%
Initial Phase
33%
Secondary Material
33%
Liquid Layer
33%
Flux Density
33%