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УФН, 2010, том 180, номер 1, страницы 55–82 (Mi ufn874)  

Эта публикация цитируется в 324 научных статьях (всего в 324 статьях)

ОБЗОРЫ АКТУАЛЬНЫХ ПРОБЛЕМ

Нелинейные аспекты квантовой физики плазмы

П. К. Шуклаabcde, Б. Элиассонa

a The Abdus Salam International Centre for Theoretical Physics
b Scottish Universities Physics Alliance (SUPA), Department of Physics, University of Strathclyde
c Instituto de Plasmas e Fusao Nuclear, Instituto Superior Técnico, Universidade Técnica de Lisboa
d Institut für Theoretische Physik IV, Fakultät für Physik und Astronomie, Ruhr-Universität Bochum
e Department of Physics, Umeå University, Sweden

Аннотация: Плотная квантовая плазма повсеместно встречается во внутренних областях планет, в компактных астрофизических объектах (например, внутри белых карликов, в магнитарах и т.д.), в полупроводниках и микромеханических системах, а также в экспериментах следующего поколения по взаимодействию мощных лазеров с плотной плазмой мишеней и в квантовых рентгеновских лазерах на свободных электронах. В отличие от классической плазмы, в квантовой могут возникать крайне высокие концентрации и низкие температуры частиц. Такая квантовая плазма состоит из вырожденных электронов, позитронов и дырок. Масса позитрона (дырки) равна (немного отличается) массе электрона, а их заряды противоположны. Вырожденные заряженные частицы (электроны, позитроны, дырки) подчиняются статистике Ферми–Дирака. В квантовой плазме появляются новые силы, связанные 1) с квантовым статистическим давлением электронов и позитронов, 2) с туннелированием электронов и позитронов через потенциал Бома и 3) с моментами спина электронов и позитронов. Учëт этих квантовых сил приводит к появлению сверхвысокочастотных дисперсионных электростатических и электромагнитных волн (например, в областях жесткого рентгеновского и гамма-излучения) с чрезвычайно короткими длинами волн. В настоящем обзоре представлены теоретические основы важных нелинейных аспектов взаимодействий типа волна-волна и волна-частица в плотной квантовой плазме. В частности, значительное внимание уделено нелинейным электростатическим электронным и ионным плазменным волнам, новым аспектам трехмерной турбулентности квантовой электронной жидкости, в том числе нелинейно связанным интенсивным электромагнитным волнам и локализованным плазменным волновым структурам. Также обсуждаются кинетические структуры в фазовом пространстве и возможные механизмы генерации квазистационарных магнитных полей в плотной квантовой плазме. Обсуждается влияние внешнего магнитного поля и момента спина электрона на динамику электромагнитной волны. В заключении отмечены направления развития нелинейной квантовой физики плазмы.

DOI: https://doi.org/10.3367/UFNr.0180.201001b.0055

Полный текст: PDF файл (5559 kB)
Полный текст: http://www.ufn.ru/ru/articles/2010/1/b/
Список литературы: PDF файл   HTML файл

Англоязычная версия:
Physics–Uspekhi, 2010, 53:1, 51–76

Реферативные базы данных:

Тип публикации: Статья
PACS: 05.30.Fk, 52.35.Mw, 52.35.Ra, 52.35.Sb
Поступила: 19 июня 2009 г.
Доработана: 26 августа 2009 г.

Образец цитирования: П. К. Шукла, Б. Элиассон, “Нелинейные аспекты квантовой физики плазмы”, УФН, 180:1 (2010), 55–82; Phys. Usp., 53:1 (2010), 51–76

Цитирование в формате AMSBIB
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