What's new

Welcome to App4Day.com

Join us now to get access to all our features. Once registered and logged in, you will be able to create topics, post replies to existing threads, give reputation to your fellow members, get your own private messenger, and so, so much more. It's also quick and totally free, so what are you waiting for?

Probing Correlated Quantum Many-Body Systems at the Single-Particle Level

F

Frankie

Moderator
Joined
Jul 7, 2023
Messages
102,490
Reaction score
0
Points
36
16e18e132aca4411a896f96ea925fd3c.jpeg

Free Download Probing Correlated Quantum Many-Body Systems at the Single-Particle Level by Manuel Endres
English | PDF | 2014 | 176 Pages | ISBN : 3319057529 | 4.8 MB
How much knowledge can we gain about a physical system and to what degree can we control it? In quantum optical systems, such as ion traps or neutral atoms in cavities, single particles and their correlations can now be probed in a way that is fundamentally limited only by the laws of quantum mechanics. In contrast, quantum many-body systems pose entirely new challenges due to the enormous number of microscopic parameters and their small length- and short time-scales.​

This thesis describes a new approach to probing quantum many-body systems at the level of individual particles: Using high-resolution, single-particle-resolved imaging and manipulation of strongly correlated atoms, single atoms can be detected and manipulated due to the large length and time-scales and the precise control of internal degrees of freedom. Such techniques lay stepping stones for the experimental exploration of new quantum many-body phenomena and applications thereof, such as quantum simulation and quantum information, through the design of systems at the microscopic scale and the measurement of previously inaccessible observables.
[/b]

Recommend Download Link Hight Speed | Please Say Thanks Keep Topic Live

NovaFile
wo6yt.rar.rar
Rapidgator
wo6yt.rar.rar.html
NitroFlare
wo6yt.rar.rar
Uploadgig
wo6yt.rar.rar
Links are Interchangeable - Single Extraction
 
Top Bottom