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- W3177401192 abstract "The history of pulsed laser deposition (PLD) and transient plasmas generated by laser ablation is intertwined with the development of various techniques for its fundamental understanding. Some diagnostic tools have been developed to better suit the rapid transient nature of the plasma (space and time dependence of all parameters, fast decay and complex chemistry inside the plasma), whereas others have been adapted from basic plasma physics studies. Langmuir probe method has been used as a real-time in situ diagnostic tool for laser ablation and later for PLD. It remains a useful tool for the PLD community arsenal, which can easily be adapted to the development of new lasers and ablation regimes and new deposition configuration, being one of the most versatile techniques for plasma diagnostics. It is the cornerstone on which charge particles are analyzed and has led to several important discoveries, such as multiple peak distribution, selective acceleration during expansion, plume splitting, plasma turbulences and fluctuations. However, because the Langmuir probe theory adaptation from classical plasma physics is not straightforward, it might lead to misinterpretation and often incorrect analysis of data. This review analyzes the limits and understanding of the technique as a foundation for attaining its full potential, which can impact the way PLD is used. This is especially useful for the pressing need of real-time, in-situ diagnostics and feedback loops for systematic semi-industrial implementation of the PLD technique." @default.
- W3177401192 created "2021-07-05" @default.
- W3177401192 creator A5009584966 @default.
- W3177401192 creator A5025921769 @default.
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- W3177401192 date "2021-06-25" @default.
- W3177401192 modified "2023-10-18" @default.
- W3177401192 title "Langmuir Probe Technique for Plasma Characterization during Pulsed Laser Deposition Process" @default.
- W3177401192 cites W1966125466 @default.
- W3177401192 cites W1967231801 @default.
- W3177401192 cites W1967650310 @default.
- W3177401192 cites W1968193917 @default.
- W3177401192 cites W1971585791 @default.
- W3177401192 cites W1972345441 @default.
- W3177401192 cites W1973790077 @default.
- W3177401192 cites W1975999977 @default.
- W3177401192 cites W1976844941 @default.
- W3177401192 cites W1978683125 @default.
- W3177401192 cites W1980486847 @default.
- W3177401192 cites W1981253088 @default.
- W3177401192 cites W1981332634 @default.
- W3177401192 cites W1986805352 @default.
- W3177401192 cites W1986963307 @default.
- W3177401192 cites W1987827390 @default.
- W3177401192 cites W1993319722 @default.
- W3177401192 cites W1995318570 @default.
- W3177401192 cites W1996074992 @default.
- W3177401192 cites W1998109489 @default.
- W3177401192 cites W2003434276 @default.
- W3177401192 cites W2006352626 @default.
- W3177401192 cites W2006996455 @default.
- W3177401192 cites W2009550869 @default.
- W3177401192 cites W2020318405 @default.
- W3177401192 cites W2022456954 @default.
- W3177401192 cites W2024023400 @default.
- W3177401192 cites W2024205007 @default.
- W3177401192 cites W2025195688 @default.
- W3177401192 cites W2027068267 @default.
- W3177401192 cites W2029204751 @default.
- W3177401192 cites W2029412052 @default.
- W3177401192 cites W2029594009 @default.
- W3177401192 cites W2033600462 @default.
- W3177401192 cites W2034599213 @default.
- W3177401192 cites W2037460279 @default.
- W3177401192 cites W2043804768 @default.
- W3177401192 cites W2044540618 @default.
- W3177401192 cites W2044624127 @default.
- W3177401192 cites W2045517256 @default.
- W3177401192 cites W2054957755 @default.
- W3177401192 cites W2057781579 @default.
- W3177401192 cites W2066901127 @default.
- W3177401192 cites W2066998625 @default.
- W3177401192 cites W2069137343 @default.
- W3177401192 cites W2069705451 @default.
- W3177401192 cites W2076279052 @default.
- W3177401192 cites W2079666566 @default.
- W3177401192 cites W2087195558 @default.
- W3177401192 cites W2087791481 @default.
- W3177401192 cites W2088059205 @default.
- W3177401192 cites W2088915729 @default.
- W3177401192 cites W2090774103 @default.
- W3177401192 cites W2095823722 @default.
- W3177401192 cites W2108448014 @default.
- W3177401192 cites W2126711704 @default.
- W3177401192 cites W2130738886 @default.
- W3177401192 cites W2134837785 @default.
- W3177401192 cites W2153206772 @default.
- W3177401192 cites W2161770737 @default.
- W3177401192 cites W2162085738 @default.
- W3177401192 cites W2168174561 @default.
- W3177401192 cites W2171981064 @default.
- W3177401192 cites W2179617295 @default.
- W3177401192 cites W2206256144 @default.
- W3177401192 cites W2518817531 @default.
- W3177401192 cites W2550989641 @default.
- W3177401192 cites W2567461124 @default.
- W3177401192 cites W2575975038 @default.
- W3177401192 cites W2588039021 @default.
- W3177401192 cites W2592063979 @default.
- W3177401192 cites W2600335250 @default.
- W3177401192 cites W2801287378 @default.
- W3177401192 cites W2870999720 @default.
- W3177401192 cites W2912796204 @default.
- W3177401192 cites W2943836813 @default.
- W3177401192 cites W3001879272 @default.
- W3177401192 cites W3004323812 @default.
- W3177401192 cites W3025875234 @default.
- W3177401192 cites W3088111030 @default.
- W3177401192 cites W3134199423 @default.
- W3177401192 doi "https://doi.org/10.3390/coatings11070762" @default.
- W3177401192 hasPublicationYear "2021" @default.
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