TY - JOUR T1 - Attosaniye Bilimi ve Gelecekteki Eğilimler TT - Attosecond Science and Future Trends AU - Alp, Dilan PY - 2019 DA - March Y2 - 2018 DO - 10.21597/jist.452353 JF - Journal of the Institute of Science and Technology JO - J. Inst. Sci. and Tech. PB - Igdir University WT - DergiPark SN - 2536-4618 SP - 360 EP - 373 VL - 9 IS - 1 LA - tr AB - Elektronikbilgi işleme, manyetik bilgi depolama alanlarının nihai boyut ve hız sınırlarınedir ve bu sınırlara nasıl yaklaşabiliriz soruları ile mikroskobik düzeydeelektron hareketinin anlaşılması ve kontrolü üzerinde yapılan birçok bilimselçalışma, attosaniye biliminin doğmasına ve ilerlemesine neden olmuştur. Son yıllardaki ultra-hız lazer teknolojisininilerlemesi, enerji ve yükün sadece atomlarla değil, aynı zamanda daha karmaşıkkatı ve moleküler sistemlerde de nasıl taşındığını anlamak için madde ile yoğunalan arasındaki etkileşme süreci anahtar rol görevi görür. Derleme olarak hazırlanan bu çalışmada,elektronların atomik ölçekli hareketini gerçek zamanlı olarak gözlemleme vekontrol etme olanağı sağlayan temel kavramlar ve deneysel araçlar, deneyselgözlenebilirliğin mikroskobik değişkenlerle birleştirilmesi için kritik roloynayan teorik modeller ve bunun beklenen teknolojik etkileri elealınmıştır. Bu amaçla, atom ve molekülerfiziği ile yoğun-madde fiziğinde nano ve attosaniye teknolojisinin rolüaraştırılarak, attosaniyelik atımların birkaç önemli ve son güncel uygulamaalanları hakkında yerel literatüre kaynak niteliğinde bilgi sunacaktır. KW - Attosaniye bilimi KW - attosaat KW - güçlü lazer alanı KW - multifoton süreçler KW - ultra-hız lazer teknolojisi KW - ultra-kısa lazer atımları N2 - What are thefinal size and velocity limits of electronic data processing and magneticinformation storage areas, and how can we approach these boundaries questionsand the understanding and control of microscopic electron motion along withmany scientific studies have led to the birth and progress of AttosecondScience. The progress of ultrafast laser technology inrecent years, the interaction process between the matter and the intense fieldplay a key role in understanding how energy and charge are carried in atoms aswell as in more complex solid and molecular systems. This review study will focus on the basicconcepts and experimental tools that allow to observe and control the atomicscale motion of electrons in real time, understand the theoretical models thatare critical for combining experimental observability with microscopicvariables, and the expected technological effects. For this purpose, the role of nano andattosecond technologies in atomic and molecular physics, and condensed matterphysics will be investigated and local literature sources will be presentedabout several important and recent current application areas of attosecondpulses. CR - Alp D, 2017. Super Intensity Laser Field Interacted with atomic System in Multiphoton Process: Non-dipole and non-relativistic effects, Int. Journal Pure and Applied Science, 3(2):1-9. CR - Altucci C, Nebbioso A, Benedetti R, Esposito R, Carafa V, Conte M, Micciarelli M, Altucci L, Velotta R, 2012. 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Femtochemistry: Ultrafast dynamics of the chemical bond, Vol. I, World Scientific, Sigapore 341. UR - https://doi.org/10.21597/jist.452353 L1 - https://dergipark.org.tr/en/download/article-file/651588 ER -