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The collision-free response of atomic systems generated by intense irradiation at 193 nm exhibits several unusual properties. The behavior observed for the dependencies on atomic number, intensity of illumination, frequency, and polarization are discussed. The experimental evidence points to collective atomic motion involving several electrons and implicates a possible role for a Coster-Kronig mechanism, enabling rapid energy transfer among atomic subshells.
Proceedings of SPIE offer access to the latest innovations in research and technology and are among the most cited references in patent literature. The original research papers presented at SPIE conferences are available 2 to 4 weeks after the conferences in the SPIE Digital Library.
Proceedings of SPIE are uniquely valuable as they are used by researchers worldwide, and lead in patent cites among optics and photonics collections. They frequently rank among the 50 most used serials, out of 50,000 analyzed by Ex Libris. If it is ready for journal publication, your proceedings paper can be submitted with minimal or no revision for consideration in the relevant SPIE journal.
SPIE partners with relevant scientific databases to enable researchers to find Proceedings of SPIE. They are indexed in Web of Science, Scopus, Ei Compendex, Inspec, Google Scholar, Astrophysical Data System (ADS), CrossRef, and other scholarly indexes, and are widely accessible to leading research organizations, conference attendees, and individual researchers.
Gallic acid (GA or 3, 4, 5- trihydroxybenzoic acid) is a compound found in several plants including, tea leaves, grapes, pineapple, and coriander. GA has been shown to have antioxidant, anti-inflammatory, antifungal, antiviral, anti-cancer, and anti-apoptotic properties. The protective function of GA is due to its ability to inhibit ROS induced cellular damage, induce apoptosis of cancerous cells, upregulate glutathione peroxidase (GPX) expression, and mitigate the presence of free radicals (6, 7).
Additionally, serum and renal MDA levels were observed to decrease in the IR + GA group compared to the non-treated IR group, however the decrease in serum MDA levels was not significant. MDA is a biomarker of oxidative stress for free radicals produced in the body. Elevated levels of MDA indicate an increase in cell membrane damage. In fact, free radicals increase lipid peroxidation of unsaturated fatty acids, which ultimately leads to apoptosis. One of the reasons for increased MDA levels can be due to the increase in the production of free radicals in the electron transport chain. Furthermore, increased serum levels of MDA can be the cause of many diseases associated with oxidative stress, such as diabetes (17).
For submission of conference papers, live presentation or video presentation is required for Keynote, oral and poster presenters (in-person and online). For online poster presenters, if only poster pdf file was uploaded without short video, the paper submission is not allowed. (Onsite poster presenters can submit the conference paper.) If submitted the presentation was cancelled or no show, the paper submission will be rejected.
For further imformation, please click here [How to submit proceeding paper_rev2.pdf]. Additionally, for inquiry regarding submission of conference proceedings, please do not hesitate to contact the Editors of PPS-37 Conference Proceedings.
However, The ERFS application will only be accepted from organizations that have the Japanese legal registered-organization number. As the PPS-37 Organizing Committee is a voluntary organization for international academic conferences and not for business, the Committee is not able to apply for the ERFS. Therefore, we cannot help for the VISA application because of above reason.
In this chapter we delve more deeply into the 1D theory of the FEL. The 1D picture is sufficient to understand how an FEL works, since the essential FEL physics is longitudinal in nature. A free-electron laser acts as a linear amplifier in the small signal regime, and we will find that it is most easily analyzed theoretically in the frequency representation. Hence, we begin this section by deriving the Klimontovich equation describing the electron beam in the frequency domain, to which we add the Maxwell equation (3.68). We then apply these equations to the small-gain limit in Section 4.2, finding solutions that generalize those of Section 3.3. We then turn our attention to the high-gain FEL in Section 4.3, showing how the linearized FEL equations can be solved for arbitrary initial conditions using the Laplace transform. In particular, Section 4.3 covers self-amplified spontaneous emission (SASE) in some detail, because SASE provides the simplest way to produce intense X-rays. We derive the basic properties of SASE in the frequency domain, including its initialization from the fluctuations in the electron beam density (shot noise), its exponential gain, and its spectral properties. We then connect our analysis to the time domain picture via Fourier transformation, which helps complete the characterization of SASE's fluctuation properties. The chapter concludes with a discussion of how the FEL gain saturates in Section 4.4. We derive a quasilinear theory that describes the decrease in gain associated with an increase in electron beam energy spread, and show qualitatively how this is related to particle trapping. We also discuss tapering the undulator strength parameter after saturation to further extract radiation energy from the electron beam. Finally, we make a few comments on superradiance, focusing on the superradiant FEL solution associated with particle trapping that can support powers in excess of the usual FEL saturation power.
All conference contributions (both talks and posters) will bepublished as AIP ConferenceProceedings, after having been refereed.The registration fee includes a free volume of the conference proceedings.
The conference room is equipped with anoverhead projector. Contributed talks have to be uploaded to a centralcomputer which will be used for the presentations. Accepted formatsare PDF (recommended) and Powerpoint. Note that presenting contributedtalks from other than the central computer is not possible because of the tight schedule.
Posters are planned to be on show during the wholeconference. There will be three dedicated poster sessions (Mon, Tue,Thu - during the afternoon coffee breaks). We kindly ask the authors tostay in front of their posters during this time.
Please register to attend talks on positron annihilation spectroscopy topics, to say hello to colleagues in person, and visit the Kennedy Space Center as part of your conference registration. Hopefully we'll see a rocket launch while we're there!
The goal of the conference is to provide a platform for positron researchers from all over the world to present their latest research results, communicate new ideas with colleagues face to face, and to find partners for future collaboration. The conference proceedings will be published in a peer review journal, and the official language of the conference will be English.
Positron school will be held on August 19 from 8AM to 6PM prior to our first conference gathering that evening. Since we start early it is reasonable to arrive to Orlando a day in advance on August 18.
ICPA-18 Proceedings will be published by American Institute of Physics (AIP) through AIP Conference Proceedings. All the submitted manuscripts to ICPA-18 meeting will be peer reviewed and published as AIP Proceedings. It will be open access to increase the visibility and spread of the proceedings. The open access publication charge is included in the registration fee. In addition, there will be a published hard copy of the proceedings upon request for little extra charge.
The International Conference on Energy, Environment, Epidemiology and Information System (ICENIS) is an annual conference organized by the School of Postgraduate Studies Universitas Diponegoro University, one of the leading universities in Indonesia.
Submitted papers must be in English to show original research. Authors must prepare the paper using Microsoft Word or LaTeX, according to the guidelines and templates. Each paper has to be unpublished and not being reviewed elsewhere. Figures can use color and free charged for that. If the submission is accepted, one of the authors must register (see the explanation below for details) and attend the virtual conference to give presentation. All manuscripts submitted to the conference are subject to a single-blind peer review process. The selected papers will be published to American Institute of Physics (AIP): Conference Proceedings ( ) indexed by Scopus.
General Content: Clearly state the relation of the submitted manuscript to previously published work, including papers, meeting abstracts, and conference proceedings. (Preprints and internal laboratory reports are not considered publications.) If the results reported in the manuscript correct, supplement, or supersede previous results, state this advance. Distinguish your results from those previously obtained.
Affiliations of authors should be given without abbreviation. (Use Massachusetts Institute of Technology, not MIT.) Give the city, state, and zip code for U.S. addresses; add the country for other addresses. Affiliations must be institutions, not conferences, collaborations, or temporary meeting places.