Scanning SQUID Microscope for Studying Vortex Matter in Type-II Superconductors (Springer Theses)
Language: English
Published by Springer, 2014
- Softcover
- Used

Seller: Mispah books, Redhill, Surrey, United KingdomMispah books
AbeBooks seller since April 15, 2021
Condition: Used - As new
US$ 206.81
Quantity: 1 available
Add to basketItem description from seller
LIKE NEW. SHIPS FROM MULTIPLE LOCATIONS.
Seller Inventory # ERICA75836424315266
- Title
- Scanning SQUID Microscope for Studying Vortex Matter in Type-II Superconductors (Springer Theses)
- Author
- Finkler, Amit
- Publisher
- Springer
- Publication year
- 2014
- Condition
- Like New
- Book Type
- book
- Binding
- Paperback
- Language
- English
- ISBN 10
- 3642431526
- ISBN 13
- 9783642431524
Common methods of local magnetic imaging display either a high spatial resolution and relatively poor field sensitivity (MFM, Lorentz microscopy), or a relatively high field sensitivity but limited spatial resolution (scanning SQUID microscopy). Since the magnetic field of a nanoparticle or nanostructure decays rapidly with distance from the structure, the achievable spatial resolution is ultimately limited by the probe-sample separation. This thesis presents a novel method for fabricating the smallest superconducting quantum interference device (SQUID) that resides on the apex of a very sharp tip. The nanoSQUID-on-tip displays a characteristic size down to 100 nm and a field sensitivity of 10^-3 Gauss/Hz^(1/2). A scanning SQUID microsope was constructed by gluing the nanoSQUID-on-tip to a quartz tuning-fork. This enabled the nanoSQUID to be scanned within nanometers of the sample surface, providing simultaneous images of sample topography and the magnetic field distribution. This microscope represents a significant improvement over the existing scanning SQUID techniques and is expected to be able to image the spin of a single electron.
"Synopsis" may belong to another edition of this title.
From the Back Cover
Common methods of local magnetic imaging display either a high spatial resolution and relatively poor field sensitivity (MFM, Lorentz microscopy), or a relatively high field sensitivity but limited spatial resolution (scanning SQUID microscopy). Since the magnetic field of a nanoparticle or nanostructure decays rapidly with distance from the structure, the achievable spatial resolution is ultimately limited by the probe-sample separation. This thesis presents a novel method for fabricating the smallest superconducting quantum interference device (SQUID) that resides on the apex of a very sharp tip. The nanoSQUID-on-tip displays a characteristic size down to 100 nm and a field sensitivity of 10^-3 Gauss/Hz^(1/2). A scanning SQUID microsope was constructed by gluing the nanoSQUID-on-tip to a quartz tuning-fork. This enabled the nanoSQUID to be scanned within nanometers of the sample surface, providing simultaneous images of sample topography and the magnetic field distribution. This microscope represents a significant improvement over the existing scanning SQUID techniques and is expected to be able to image the spin of a single electron.
"About the title" may belong to another edition of this title.
Mispah books
Redhill, Surrey, United Kingdom
AbeBooks seller since April 15, 2021
Shipping rates from United Kingdom to U.S.A.
| Item | 14 to 15 business days | 9 to 10 business days |
|---|---|---|
| First item | US$ 33.02 | US$ 35.67 |
Payment methods
Store description
We have collection of General books ,Science Books, Fiction & Academic Books. we ship from multiple location. Delhi, US and UK Return Address Mispah books flat4 , Centenary court, 30 Warwick Road Redhill , SURRE RH1 1FQ United Kingdom
Specialty
Fiction & Academic Books, Science, GeneralSeller's business information
Mispah books
United Kingdom
Terms of sale
We offer excellent customer service & easy return facility.
we ship from Multiple location,UK,India,US
Return address:
Mispah books
flat4 ,
Centenary court, 30 Warwick Road
Redhill , SURRE RH1 1FQ
United Kingdom
Shipping terms
Our rates depends on weight of the item & shipping destination