Libmonster ID: ID-829
Author(s) of the publication: Yaroslav RENKAS

Russian specialists in space materials technology have elaborated a fundamental research program for the period up to 2010. Research into the Synthesis of Transistor Multi-Layer Epitaxial Structures in Space Vacuum behind a Molecular Screen is a new subject at the top of the list. The Institute of Transistor Physics of the RAS Siberian Branch has been assigned as the head institution responsible for its implementation. The department for growth and structure of transistor crystals and films, led by Oleg Pchelyakov, Dr. Sc. (Phys. & Math.), will be engaged directly in the development of methods and equipment for the implementation of this space technology called EKRAN (Screen). He spoke about the project in his interview granted to the newspaper Nauka v Sibiri.

The researcher stressed that as a result of the development of transistor materiology in the past 25 years, high-precision and science-intensive technologies have been developed with the use of high and pure vacuum, with molecular-beam epitaxy (MBE) primarily among them. The process is associated with the growth of monocrystalline thin films and multi-layer structures consisting of varied chemical compounds and solid solutions with transistor, metal or insulating properties.

The process consists in the application of these films with the help of molecular and atomic beams in superhigh vacuum to the surface of a transistor plate with strict control over the chemical composition, structure and thickness of each of its layers. Such systems are used as the initial material for building micro- and optical electronic circuits and devices. Moreover, the MBE technology in combination with modern lithography methods for formation of the pattern of microcircuits (by analogy with nanocircuits) has made it possible to switch over from micron layers and linear dimensions of individual elements to nano-metric ones. Three orders of magnitude for each of the three dimensions in the electronic device space have been discarded. At the same time we have a qualitative breakthrough of nano-electronics to the ultra-high frequency band of operation for transmitting and receiving devices and to superminiature high-density electronic memory circuits.

However, there are obstacles in the way of reducing the size and increasing the number of elements in integral circuits. In the course of the technological process we find alien particles that are larger than the elements in the space surrounding the plate with nano-circuits, while on the circuit surface they suddenly act as the circuit's killers. As the process goes on or as next layers are applied, these "killers" close the electrodes giving rise to irreparable defects. That is why the respective modern production lines are placed in special shops, with their cleanliness group determined by the quantity of specks of dust per sq inch per hour. And the workers operating there have to wear special uniforms looking much like spacesuits for dust not to be produced by them. What with the trend for the further development of completely integrated electronic production units, forecasts are made for possible uses in outer space of high vacuum technologies in the future.

Research of this kind has so far been carried out solely by specialists in the USA (since 1989) and in Russia (since 1996). Incidentally, the idea of a molecular screen to be used for ultra-high vacuum to be produced in outer space at low orbits was put forward by American researchers. They proved by calculations that if a screen-a polished stainless steel disc-orbited the earth at an altitude of 200 - 400 km (where orbital stations usually

стр. 62


operate) at orbital velocity, a cone trace practically devoid of any matter will be formed in its wake. Such a high degree of rarefaction may be obtained with the help of a disc that it will take you a million years to see the appearance of one oxygen atom on a platform of 1 sq decimeter (O2 is the basic component of a gaseous medium at the altitude of the orbital flight of space stations). All pressure behind the screen will be determined by helium and hydrogen atoms, produced by the Sun, and also by the matter evaporating from the screen surface. To compare: ground superhigh-vacuum technological installations with cryogen pumps produce thousands of times less maximum rarefaction than that obtained in the first American space experiments with a molecular screen.

After the American experiments Russian researchers launched their own research in this sphere. The best results were attained by the group of specialists from Zelenograd, Moscow Region, led by Yevgeny Markov, Dr. Sc. (Phys. & Math.). The Russian project, described as EKRAN, was later implemented by them jointly with members of the Russian Space Corporation Energiya named after S. R Korolev (Korolev, Moscow Region), researchers of Tomsk State University, of Moscow State Technical University named after N. E. Bauman, the RAS Crystallography Institute named after A. V. Shubnikov (Moscow) and of its branch in Kaluga.

As to priorities in the elaboration of this problem, the fact is that long ago Aristotle (384 - 322 B. C.) formulated it approximately in this way: "vacancy (vacuum) is space formed in the trace of the stone thrown from a sling. True, it vanishes in no time, for particles from the surrounding space rush into it..." The great Greek thinker had only to conclude: "and if we make the stone develop a speed comparable to that of all particles in the surrounding space, then absolutely vacant space will always exist behind it in its flight." Then we would have been able to regard him as the author of the latest method to obtain high vacuum!

And I should add the following: it would take millions of dollars to design and operate modern super-vacuum installations. After the implementation of the domestic EKRAN project, it is planned to build an orbital mini factory for the manufacture of an alternative substratum material in order to obtain complex transistor compounds and multi-layer heterostructures on the surface of large-diameter silicon plates for the further development of integral opto-, micro- and nano-electronics.

G. Shpak, "Vacuum Technologies in Open Space", Nauka v Sibiri (Science in Siberia), Nos 20 - 21, 2007

Prepared by Yaroslav RENKAS

 


© elibrary.at

Permanent link to this publication:

https://elibrary.at/m/articles/view/MATERIALS-GROWN-IN-SPACE-VACUUM

Similar publications: L_country2 LWorld Y G


Publisher:

Austria OnlineContacts and other materials (articles, photo, files etc)

Author's official page at Libmonster: https://elibrary.at/Libmonster

Find other author's materials at: Libmonster (all the World)GoogleYandex

Permanent link for scientific papers (for citations):

Yaroslav RENKAS, MATERIALS GROWN IN SPACE VACUUM // Vienna: Austria (ELIBRARY.AT). Updated: 25.09.2018. URL: https://elibrary.at/m/articles/view/MATERIALS-GROWN-IN-SPACE-VACUUM (date of access: 17.02.2026).

Publication author(s) - Yaroslav RENKAS:

Yaroslav RENKAS → other publications, search: Libmonster AustriaLibmonster WorldGoogleYandex

Comments:



Reviews of professional authors
Order by: 
Per page: 
 
  • There are no comments yet
Related topics
Publisher
Austria Online
Vienna, Austria
660 views rating
25.09.2018 (2701 days ago)
0 subscribers
Rating
0 votes
Related Articles
В настоящей статье рассматривается вопрос о причинах многолетней безнаказанности Джеффри Эпштейна, американского финансиста, обвинявшегося в организации сети сексуальной эксплуатации несовершеннолетних. На основе анализа хронологии расследований, судебных документов и экспертных заключений реконструируется механизм, позволивший преступнику избегать реального наказания на протяжении более чем полутора десятилетий. Особое внимание уделяется факторам, обеспечившим его безнаказанность: привилегированному социальному статусу, связям с элитами, коррупционным соглашениям с прокуратурой и системным недостаткам американского правосудия.
15 hours ago · From Magyarország
В настоящей статье рассматривается горная система Кыргызстана как уникальный географический объект, определяющий гидрологический, климатический и культурный ландшафт региона. На основе анализа орографических данных, гляциологических исследований и исторических свидетельств реконструируется сложная структура Тянь-Шаня и Памиро-Алая, формирующих более девяноста процентов территории республики. Особое внимание уделяется высочайшим вершинам – пику Победы и Хан-Тенгри, ледниковым комплексам, а также процессам, связывающим криосферу с водной безопасностью всего Центральноазиатского региона.
22 hours ago · From Magyarország
Jelen cikkben a Kalasnyikov automata használatával összefüggő emberi áldozatok számát vizsgálják a készülék teljes története során. Az elérhető statisztikai becslések, történelmi bizonyítékok és szakértői vélemények elemzésére alapozva felvázolják a valószínű számok tartományát, és megvizsgálják az ilyen számítások metodológiai nehézségeit. Különös figyelmet fordítanak a különböző források összevetésére, az éves halálozási mutatókra, és arra, hogy a Kalasnyikov hol helyezkedik el a többi fegyver közül halálozási mutató alapján.
2 days ago · From Magyarország
В настоящей статье рассматривается комплекс достопримечательностей Грузии, сформировавшийся на стыке геологических процессов, исторических эпох и культурных влияний. На основе анализа туристических маршрутов, археологических данных и архитектурных памятников реконструируется уникальный облик страны, где на сравнительно небольшой территории сосредоточены объекты всемирного наследия, реликтовые ландшафты и действующие сакральные центры. Особое внимание уделяется феномену пещерных городов, винодельческой традиции и контрасту между урбанистической эстетикой Тбилиси и суровой природой Высокого Кавказа.
2 days ago · From Magyarország
Ez a cikk megvizsgálja Noé bárkájának bibliai elbeszélése és az Ararát-hegyként ismert földrajzi képződmény közötti összetett kapcsolatot. Történelmi bizonyítékok, archeológiai expedíciók és modern geofizikai kutatások elemzése alapján rekonstruálják a bibliai hajó végső nyughelyével kapcsolatos elképzelések fejlődését. Külön figyelmet szentelnek az „Ararat Anomália” jelenségnek, a Durupinar geológiai szerkezetnek, és a tudományos közösség és a bibliai rajongók közötti régóta fennálló vitának.
Catalog: География 
3 days ago · From Magyarország
Jelen cikkben egy összetett viszonyt vizsgálunk a bibliai Noé bárkájának narratívája és az Ararát-hegyként ismert földrajzi objektum között. Történelmi bizonyítékok, archeológiai expedíciók és modern geofizikai kutatások elemzése alapján rekonstruáljuk a bibliai hajó végső megállóhelyére vonatkozó elképzelések fejlődését. Kiemelt figyelmet szentelünk az „Ararát-anomália” jelenségének, a Durupınar-geoszerkezetnek és a tudományos közösség és biblisták közötti több évtizedes vitának.
Catalog: География 
3 days ago · From Magyarország
A fedéssel ellátott nyitott parkoló a jármű megóvásának tényezője.
4 days ago · From Magyarország
És mégis, mikor fogja az emberiség meghódítani a Holdat?
5 days ago · From Magyarország
Patkányok evolúciója
Catalog: Биология 
6 days ago · From Magyarország
Miért állították le a háborúkat az olimpiák kedvéért?
7 days ago · From Magyarország

New publications:

Popular with readers:

News from other countries:

ELIBRARY.AT - Austrian Digital Library

Create your author's collection of articles, books, author's works, biographies, photographic documents, files. Save forever your author's legacy in digital form. Click here to register as an author.
Library Partners

MATERIALS GROWN IN SPACE VACUUM
 

Editorial Contacts
Chat for Authors: AT LIVE: We are in social networks:

About · News · For Advertisers

Digital Library of Austria ® All rights reserved.
2025-2026, ELIBRARY.AT is a part of Libmonster, international library network (open map)
Preserving Austria's heritage


LIBMONSTER NETWORK ONE WORLD - ONE LIBRARY

US-Great Britain Sweden Serbia
Russia Belarus Ukraine Kazakhstan Moldova Tajikistan Estonia Russia-2 Belarus-2

Create and store your author's collection at Libmonster: articles, books, studies. Libmonster will spread your heritage all over the world (through a network of affiliates, partner libraries, search engines, social networks). You will be able to share a link to your profile with colleagues, students, readers and other interested parties, in order to acquaint them with your copyright heritage. Once you register, you have more than 100 tools at your disposal to build your own author collection. It's free: it was, it is, and it always will be.

Download app for Android