
Работа поÑвÑщена изучению процеÑÑа полÑризации фоÑфатных Ñтёкол различного ÑоÑтава и ÑтроениÑ. Задачи, которые решалиÑÑŒ в ходе работы: 1. Выбор фоÑфатных Ñтекол Ñо Ñтруктурами, изменÑющимиÑÑ Ð² Ñ€Ñду мета-, пиро-, орто- и далее. Изготовление образцов Ð´Ð»Ñ Ð¿Ð¾Ð»Ñри-зации. 2. Проведение полÑризации выбранных Ñтекол 3. ИÑÑледование результатов полÑризации каждого Ñтекла 4. Сравнение результатов полÑризации фоÑфатных Ñтекол Ñ Ñ€Ð°Ð·Ð½Ð¾Ð¹ Ñтруктурой. Работа проведена на базе лабораторий двух учреждений: ГоÑударÑтвенного оптичеÑкого инÑтитута им. С. И. Вавилова и ÐкадемичеÑкого универÑитета им. Ж.И. Ðлферова. Проведена полÑÑ€Ð¸Ð·Ð°Ñ†Ð¸Ñ Ñ„Ð¾Ñфатных Ñтёкол различного ÑоÑтава и ÑтроениÑ. ПолÑризованные облаÑти Ñтекол изучалиÑÑŒ Ñ Ð¿Ð¾Ð¼Ð¾Ñ‰ÑŒÑŽ интерферометричеÑкого метода (измерение фазового контраÑта) и метода Ð¿Ð¾Ð»Ð¾Ñ ÐœÐµÐ¹ÐºÐµÑ€Ð° (измерение ÑффективноÑти генерации второй гармоники). По Ñтим данным Ñделаны выводы об ÑффективноÑти процеÑÑа. Дополнительно Ð´Ð»Ñ Ð²Ñех образцов измерены ИК- и оптичеÑкие Ñпектры поглощениÑ, выÑвлÑющие проникновение в Ñтекла атмоÑферной воды и/или позволÑющие Ñделать оценки толщин полÑризованных облаÑтей Ñтекол. Ð”Ð»Ñ Ñ‡Ð°Ñти образцов приведены микрофотографии полÑризованных облаÑтей. Проведен анализ полученных результатов Ð´Ð»Ñ Ñтекол Ñ Ñ€Ð°Ð·Ð½Ð¾Ð¹ Ñтруктурой, полÑризованных при одинаковых уÑловиÑÑ…. Обнаружено ÑущеÑтвенное отличие в поведении токов полÑризации Ð´Ð»Ñ Ñтекол разной Ñтруктуры – Ð´Ð»Ñ Ñтекол Ñо Ñтруктурой близкой к метафоÑфатам токи полÑризации имеют не-Ñтандартную форму (имеют макÑимум), что пока не имеет объÑÑнениÑ. Ðаблюдаемые фазовые контраÑты во вÑех полÑризованных Ñтеклах очень низ-кие. Ð’Ñ‹Ñвлено разрушение поверхноÑти и объёмной чаÑти образцов, а также Ñ€Ñд других оÑобенноÑтей, которые приводили к Ñильным иÑкажениÑм Ð¿Ð¾Ð»Ð¾Ñ ÐœÐµÐ¹ÐºÐµÑ€Ð°, что не позволÑло Ñделать однозначные выводы об ÑффективноÑти генерации второй гармоники – единÑтвенно, что можно конÑтатировать, Ð²Ñ‚Ð¾Ñ€Ð°Ñ Ð³Ð°Ñ€Ð¼Ð¾Ð½Ð¸ÐºÐ° в полÑризованных Ñтеклах генерируетÑÑ. Ð”Ð»Ñ Ð¿Ð¾Ð»ÑƒÑ‡ÐµÐ½Ð¸Ñ Ð½Ð°Ð´ÐµÐ¶Ð½Ñ‹Ñ… результатов, их интерпретации и Ð¿Ð¾Ð½Ð¸Ð¼Ð°Ð½Ð¸Ñ Ñ„Ð¸Ð·Ð¸Ñ‡ÐµÑких механизмов полÑризации фоÑфатных Ñтекол, требуетÑÑ Ð¿Ñ€Ð¾Ð²ÐµÐ´ÐµÐ½Ð¸Ðµ дополнительных иÑÑледований.
The given work is devoted to studying process of poling of phosphate glass-es with varying compositions and structure. The research set the following goals: 1. Choice of phosphate glasses with structures, varying in the line of metha-, pyro-, ortho- and so on. Fabrication of samples for polariza-tion. 2. Providing of poling of chosen samples. 3. Investigation of poling results for each sample. 4. Compare the poling results for phosphate glasses with different struc-tures. The work was fulfilled on the premises of two institutes: S. I. Vavilov State Optical Institute and Saint Petersburg National Research Academic University of the Russian Academy of Sciences. Provided poling of phosphate glasses of varying composition and structure. Poled areas were studied with interferometric method (studying of phase contrast) and Maker Fringes method (measuring of effective-ness of second harmonic generation). By this data, the conclusion about the effec-tiveness of processes was made. Additionally, IR- and optical spectra of absorption were made, which reveal the absorption of atmospheric water and, in some cases, allow to estimate the depth of poled areas of glasses. For some sample microphoto-graphs of poled areas are given. Analysis of obtained results is given for glasses with different structure, poled under similar conditions. Discovered the significant difference in the behav-ior of polarization currents for glasses with different structure – for glasses with structure close to metaphosphate, polarization currents have non-standard shape (have a maximum), that is yet to be explained. Observable phase contrasts for each sample are very low. Discovered the destruction of the surface and the volume part of samples and other peculiarities, which distort Maker fringes, that make it impos-sible to make clear conclusion about the effectiveness of second harmonic genera-tion. The only can be stated, second harmonic is generated in poled glasses. To get reliable results, its interpretation and understanding of physical mech-anism of poling of phosphate glasses, additional research is needed.
ÑоÑÑаÑнÑе ÑÑÑкла, orthoposphates, second harmonic generation, пиÑоÑоÑÑаÑÑ, меÑаÑоÑÑаÑÑ, генеÑаÑÐ¸Ñ Ð²ÑоÑой гаÑмоники, phosphate glasses, ÑазовÑй конÑÑаÑÑ, phase contrast, methaphosphates, оÑÑоÑоÑÑаÑÑ, pyrophosphates, glass poling, полÑÑизаÑÐ¸Ñ ÑÑÑкол, ggc
ÑоÑÑаÑнÑе ÑÑÑкла, orthoposphates, second harmonic generation, пиÑоÑоÑÑаÑÑ, меÑаÑоÑÑаÑÑ, генеÑаÑÐ¸Ñ Ð²ÑоÑой гаÑмоники, phosphate glasses, ÑазовÑй конÑÑаÑÑ, phase contrast, methaphosphates, оÑÑоÑоÑÑаÑÑ, pyrophosphates, glass poling, полÑÑизаÑÐ¸Ñ ÑÑÑкол, ggc
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