0
Your cart

Your cart is empty

Browse All Departments
  • All Departments
Price
  • R500 - R1,000 (1)
  • R2,500 - R5,000 (1)
  • -
Status
Brand

Showing 1 - 2 of 2 matches in All Departments

Probing Non-Equilibrium Dynamics in Two-Dimensional Quantum Gases (Hardcover, 1st ed. 2022): Chengan Chen Probing Non-Equilibrium Dynamics in Two-Dimensional Quantum Gases (Hardcover, 1st ed. 2022)
Chengan Chen
R2,866 Discovery Miles 28 660 Ships in 10 - 15 working days

This thesis explores the physics of non-equilibrium quantum dynamics in homogeneous two-dimensional (2D) quantum gases. Ultracold quantum gases driven out of equilibrium have been prominent platforms for studying quantum many-body physics. However, probing non-equilibrium dynamics in conventionally trapped, inhomogeneous atomic quantum gases has been a challenging task because coexisting mass transport and spreading of quantum correlations often complicate experimental analyses. In this work, the author solves this technical hurdle by producing ultracold cesium atoms in a quasi-2D optical box potential. The exquisite optical trap allows one to remove density inhomogeneity in a degenerate quantum gas and control its dimensionality. The author also details the development of a high-resolution, in situ imaging technique to monitor the evolution of collective excitations and quantum transport down to atomic shot-noise, and at the length scale of elementary collective excitations. Meanwhile, tunable Feshbach resonances in ultracold cesium atoms permit precise and dynamical control of interactions with high temporal and even spatial resolutions. By employing these state-of-the-art techniques, the author performed interaction quenches to control the generation and evolution of quasiparticles in quantum gases, presenting the first direct measurement of quantum entanglement between interaction quench generated quasiparticle pairs in an atomic superfluid. Quenching to attractive interactions, this work shows stimulated emission of quasiparticles, leading to amplified density waves and fragmentation, forming 2D matter-wave Townes solitons that were previously considered impossible to form in equilibrium due to their instability. This thesis unveils a set of scale-invariant and universal quench dynamics and provides unprecedented tools to explore quantum entanglement transport in a homogenous quantum gas.

Fallen Elites (Paperback): Ann Morrison Fallen Elites (Paperback)
Ann Morrison; Translated by Chengan Chen, Zhuoru Ding
R756 Discovery Miles 7 560 Ships in 10 - 15 working days
Free Delivery
Pinterest Twitter Facebook Google+
You may like...
Quantum Physics Basic Principles…
Loew Kaufmann Hardcover R854 R738 Discovery Miles 7 380
Asg 17425 co2 12g lubrication cartridges…
R445 R325 Discovery Miles 3 250
Oxford Practice Grammar: Intermediate…
John Eastwood Paperback R1,236 Discovery Miles 12 360
Networked Collaborative Learning…
Guglielmo Trentin Paperback R1,546 Discovery Miles 15 460
SPiN 3: Grammar Book (Greece) - Greek…
Cengage Learning ELT Paperback R1,200 Discovery Miles 12 000
The American Public Library and the…
Patrick Williams Hardcover R1,273 Discovery Miles 12 730
Betting On A Darkie - Lifting The…
Mteto Nyati Paperback  (2)
R375 R352 Discovery Miles 3 520
Alt-Finance - How the City of London…
Marlene Benquet, Theo Bourgeron Hardcover R3,022 R2,110 Discovery Miles 21 100
Blues For The White Man - Hearing Black…
Fred de Vries Paperback R143 Discovery Miles 1 430
Trusted Computing Platforms - TPM2.0 in…
Graeme Proudler, Liqun Chen, … Hardcover R5,157 Discovery Miles 51 570

 

Partners