2020
DOI: 10.1070/qel17269
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Lasing efficiency of krypton ions in the (8 – 14)-nm band upon pulsed laser excitation

Abstract: The emission spectra of krypton plasma in the range of 8 – 14 nm upon excitation of a pulsed gas jet by 1.06-mm Nd : YAG laser radiation with a pulse energy of 0.85 J, pulse duration of 5.2 ns, and repetition rate of 10 Hz are investigated. The krypton emission spectrum is a wide (8 – 14 nm) band, peaking at 10.3 nm, which is formed by a series of much narrower lines. The observed lines are identified, and the fraction of laser pulse energy converted into the (8 – 14)-nm emission band and emitted into half-spa… Show more

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Cited by 9 publications
(2 citation statements)
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“…At this stage of technology development, the possibility of switching to lithography with a wavelength shorter than 13.5 nm [3,4] is being actively discussed. In the range of 10−11 nm lie the maxima of krypton and xenon plasma radiation [5,6].…”
Section: Introductionmentioning
confidence: 99%
“…At this stage of technology development, the possibility of switching to lithography with a wavelength shorter than 13.5 nm [3,4] is being actively discussed. In the range of 10−11 nm lie the maxima of krypton and xenon plasma radiation [5,6].…”
Section: Introductionmentioning
confidence: 99%
“…На данном этапе развития технологии активно обсуждается возможность перехода к литографии с длиной волны короче 13.5 nm [3,4]. В диапазоне 10−11 nm лежат максимумы излучения криптоновой и ксеноновой плазмы [5,6]. Продвижение технологии проекционной литографии в этот диапазон сдерживается отсутствием достаточных (порядка 60%) коэффициентов отражения МЗ.…”
Section: Introductionunclassified