University of Jyväskylä | JYX Digital Repository

  • English  | Give feedback |
    • suomi
    • English
 
  • Login
JavaScript is disabled for your browser. Some features of this site may not work without it.
View Item 
  • JYX
  • Opinnäytteet
  • Väitöskirjat
  • View Item
JYX > Opinnäytteet > Väitöskirjat > View Item

Nanofabrication by atomic force microscopy, electron beam lithography and reactive ion etching

Thumbnail
View/Open
5.7 Mb

Downloads:  
Show download detailsHide download details  
Published in
Jyväskylän yliopisto. Fysiikan laitos. Research report
Authors
Lindell, Anssi
Date
2000

 
This thesis describes a selection of methods tested and developed for fabrication of nanodevices in the Department of Physics at the University of Jyväskylä during the period 1996-1999. Atomic force microscopy, electron beam lithography and reactive ion etching were the primary methods under investigation, but also bulk micro machined silicon nitride membranes were used as substrates for vertical tunnel junctions and as a basis of a micro calorimeter for investigating thin superconducting disks. These are the main devices fabricated, but the work has also included some aspects of nanofabrication using an atomic force microscope. Suppressing conductance of a thin metallic wire by anodic oxidation and efforts to fabricate planar tunnel junctions by atomic force microscopy will be described.
ISBN
978-951-39-9461-7
URI

http://urn.fi/URN:ISBN:978-951-39-9461-7

Metadata
Show full item record
Collections
  • Väitöskirjat [3159]

Related items

Showing items with similar title or keywords.

  • Fabrication of a gap structure for near-field heat transfer 

    Heiskanen, Samuli (2016)
    Tutkimuksessa kehitettiin kahden vaiheen valmistusprosessi rakorakenteen valmistamiseen, jossa on metallista valmistetut johdot. Tämä rakorakenne on tarkoitettu lähikentän lämmönsiirtymisen mittaamiseen. Valmistus tehtiin ...
  • Intregrating metallic wiring with three-dimensional polystyrene colloidal crystals using electron-beam lithography and three-dimensional laser lithography 

    Tian, Yaolan; Isotalo, Tero; Konttinen, Mikko P.; Li, Jiawei; Heiskanen, Samuli; Geng, Zhuoran; Maasilta, Ilari (IOP Publishing, 2017)
    We demonstrate a method to fabricate narrow, down to a few micron wide metallic leads on top of a three-dimensional colloidal crystal self-assembled from polystyrene (PS) nanospheres of diameter 260 nm, using electron-beam ...
  • Graphene phononic crystals fabricated with electron-beam lithography 

    Lankinen, Aaro (2021)
    Koska grafeeni on aito kaksiulotteinen materiaali, sen avulla voidaan tutkia käytännössä teorioiden ennustamaa käyttäytymistä sellaisissa järjestelmissä. Yksi erityisen kiinnostava ilmiö on lämmönjohtavuuden lasku kun ...
  • DNA-based applications in molecular electronics 

    Linko, Veikko (University of Jyväskylä, 2011)
    This thesis is mainly focused on DNA molecules and especially on self-assembled DNA constructs and their potential applications in nanotechnology and molecular electronics. In the field of molecular electronics the ...
  • Experimental study of electron transport in mesoscopic carbon based nanostructures 

    Mtsuko, Davie (University of Jyväskylä, 2012)
    In this thesis we have studied experimentally electronic transport in mesoscopic hybrid polypyrrole-gold devices and single multiwalled carbon nanotube devices. A novel fabrication technique for mesoscopic conducting ...
  • Browse materials
  • Browse materials
  • Articles
  • Conferences and seminars
  • Electronic books
  • Historical maps
  • Journals
  • Tunes and musical notes
  • Photographs
  • Presentations and posters
  • Publication series
  • Research reports
  • Research data
  • Study materials
  • Theses

Browse

All of JYXCollection listBy Issue DateAuthorsSubjectsPublished inDepartmentDiscipline

My Account

Login

Statistics

View Usage Statistics
  • How to publish in JYX?
  • Self-archiving
  • Publish Your Thesis Online
  • Publishing Your Dissertation
  • Publication services

Open Science at the JYU
 
Data Protection Description

Accessibility Statement

Unless otherwise specified, publicly available JYX metadata (excluding abstracts) may be freely reused under the CC0 waiver.
Open Science Centre