Self-Organized Quantum Dots for Memories: Electronic Properties and Carrier Dynamics (Springer Theses)

★★★★★ 4.5 32 reviews

US$29.67
Price when purchased online
Free shipping Free 30-day returns

Sold and shipped by biozipcode.com
We aim to show you accurate product information. Manufacturers, suppliers and others provide what you see here.
US$29.67
Price when purchased online
Free shipping Free 30-day returns

How do you want your item?
You get 30 days free! Choose a plan at checkout.
Shipping
Arrives Jul 25
Free
Pickup
Check nearby
Delivery
Not available

Sold and shipped by biozipcode.com
Free 30-day returns Details

Product details

Management number 233379378 Release Date 2026/06/27 List Price US$29.67 Model Number 233379378
Category

Today’s semiconductor memory market is divided between two types of memory: DRAM and Flash. Each has its own advantages and disadvantages. While DRAM is fast but volatile, Flash is non-volatile but slow. A memory system based on self-organized quantum dots (QDs) as storage node could combine the advantages of modern DRAM and Flash, thus merging the latter’s non-volatility with very fast write times.This thesis investigates the electronic properties of and carrier dynamics in self-organized quantum dots by means of time-resolved capacitance spectroscopy and time-resolved current measurements. The first aim is to study the localization energy of various QD systems in order to assess the potential of increasing the storage time in QDs to non-volatility. Surprisingly, it is found that the major impact of carrier capture cross-sections of QDs is to influence, and at times counterbalance, carrier storage in addition to the localization energy. The second aim is to study the coupling between a layer of self-organized QDs and a two-dimensional hole gas (2DHG), which is relevant for the read-out process in memory systems. The investigation yields the discovery of the many-particle ground states in the QD ensemble. In addition to its technological relevance, the thesis also offers new insights into the fascinating field of nanostructure physics. Read more

ASIN B00FJUGBTA
XRay Not Enabled
ISBN13 978-3319019703
Edition 2014th
Language English
File size 8.0 MB
Page Flip Enabled
Publisher Springer
Word Wise Enabled
Print length 294 pages
Accessibility Learn more
Screen Reader Supported
Publication date October 1, 2013
Enhanced typesetting Enabled

Correction of product information

If you notice any omissions or errors in the product information on this page, please use the correction request form below.

Correction Request Form

Customer ratings & reviews

4.5 out of 5
★★★★★
32 ratings | 13 reviews
How item rating is calculated
View all reviews
5 stars
83% (27)
4 stars
4% (1)
3 stars
2% (1)
2 stars
1% (0)
1 star
10% (3)
Sort by

There are currently no written reviews for this product.