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the final version of Abstract Book
the final version of Abstract Book

... Recent progress in technologies has led to enormous improvements of measurement and observation techniques, both at microscopic as well as macroscopic scales, which allow us to measure many characteristics and observe many features of various systems. These include not only very small artificial str ...
electromagnetic energy-momentum tensor within material media
electromagnetic energy-momentum tensor within material media

MULTI-SCALE TECHNIQUES IN
MULTI-SCALE TECHNIQUES IN

Feature: Antihydrogen - ALPHA Experiment
Feature: Antihydrogen - ALPHA Experiment

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Elena HELEREA Marius Daniel CĂLIN

Vibrational Stark Effect of the Electric-Field Reporter
Vibrational Stark Effect of the Electric-Field Reporter

... 2.3. MBN in Mixed SAMs on Au Electrodes To probe the behavior of the MBN nitrile stretching mode within an environment of charged residues, SEIRA-active Au electrodes were coated with SAMs of mercaptohexanoic acid (MHA). Subsequently, MBN was added to the solution under controlled potential. To inte ...
Vibrational Stark Effect of the Electric-Field Reporter 4
Vibrational Stark Effect of the Electric-Field Reporter 4

Higher Order Frequency-Domain Computational Electromagnetics , Senior Member, IEEE
Higher Order Frequency-Domain Computational Electromagnetics , Senior Member, IEEE

... or entire-domain) computational approach. This approach utilizes higher order basis functions defined in large geometrical elements (e.g., on the order of in each dimension), which enables faster (higher order) convergence of the solution. For CEM modeling of general structures that may possess arbi ...
Controlled Manipulation of Engineered Colloidal Particles Janine
Controlled Manipulation of Engineered Colloidal Particles Janine

far from the Fermi liquid regime
far from the Fermi liquid regime

Quantum Optics VII Conference Program
Quantum Optics VII Conference Program

Defining and resolving current systems in geospace
Defining and resolving current systems in geospace

Ultrafast Electron and Molecular Dynamics in Photoinduced and
Ultrafast Electron and Molecular Dynamics in Photoinduced and

A transport model of electrolyte convection through a charged
A transport model of electrolyte convection through a charged

... transport across a charged membrane and examined the distribution of electric potential and mobile ion concentrations in response to forced convection. The extended Nernst–Planck and Poisson equations were solved numerically assuming the membrane to be infinitely permeable and infinitely stiff so th ...
Efimov Trimers under Strong Confinement
Efimov Trimers under Strong Confinement

... weakly bound s-wave trimer states [1], with the deepest bound trimer set by the short-distance physics [6]. Such self-similar behavior is reminiscent of more complex systems in nature, such as coastlines, snowflakes, and ferns [7], rather than of a typical few-body system—for instance, the two-body ...
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Quantum Mechanics
Quantum Mechanics

... where we have introduced the Canonical Variables , the Characteristic Length and , the Characteristic Momentum. (Note, that ...
Quantum Information Processing
Quantum Information Processing

THE ELECTRICAL PROPERTIES OF TRANSPARENT
THE ELECTRICAL PROPERTIES OF TRANSPARENT

Simulation of the formation of antihydrogen in a nested Penning trap:
Simulation of the formation of antihydrogen in a nested Penning trap:

Molecular Dynamics in Diatomic Molecules with One
Molecular Dynamics in Diatomic Molecules with One

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Single Molecule Magnets

Zero Point Energy
Zero Point Energy

... from not only thermal energy (heat) but also from another type of radiation now known as classical electromagnetic zero point energy. Mr Sparnaay determined that not only did the zero point electromagnetic energy exist in a vacuum but also that it persisted even at a temperature of absolute zero. Th ...
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Scattering properties of ultra

annual report 2015 - ARC Centre of Excellence for Engineered
annual report 2015 - ARC Centre of Excellence for Engineered

... home computers, iPhones, GPS, atomic clocks and Magnetic Resonance Imaging (MRI). From flat-panel monitors to optical networks, quantum mechanics has allowed us to engineer the technologies that shape our world. Today’s technology only captures a small fraction of the potential in quantum physics. T ...
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Aharonov–Bohm effect

The Aharonov–Bohm effect, sometimes called the Ehrenberg–Siday–Aharonov–Bohm effect, is a quantum mechanical phenomenon in which an electrically charged particle is affected by an electromagnetic field (E, B), despite being confined to a region in which both the magnetic field B and electric field E are zero. The underlying mechanism is the coupling of the electromagnetic potential with the complex phase of a charged particle's wavefunction, and the Aharonov–Bohm effect is accordingly illustrated by interference experiments.The most commonly described case, sometimes called the Aharonov–Bohm solenoid effect, takes place when the wave function of a charged particle passing around a long solenoid experiences a phase shift as a result of the enclosed magnetic field, despite the magnetic field being negligible in the region through which the particle passes and the particle's wavefunction being negligible inside the solenoid. This phase shift has been observed experimentally. There are also magnetic Aharonov–Bohm effects on bound energies and scattering cross sections, but these cases have not been experimentally tested. An electric Aharonov–Bohm phenomenon was also predicted, in which a charged particle is affected by regions with different electrical potentials but zero electric field, but this has no experimental confirmation yet. A separate ""molecular"" Aharonov–Bohm effect was proposed for nuclear motion in multiply connected regions, but this has been argued to be a different kind of geometric phase as it is ""neither nonlocal nor topological"", depending only on local quantities along the nuclear path.Werner Ehrenberg and Raymond E. Siday first predicted the effect in 1949, and similar effects were later published by Yakir Aharonov and David Bohm in 1959. After publication of the 1959 paper, Bohm was informed of Ehrenberg and Siday's work, which was acknowledged and credited in Bohm and Aharonov's subsequent 1961 paper.Subsequently, the effect was confirmed experimentally by several authors; a general review can be found in Peshkin and Tonomura (1989).
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