Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Controlling the Aharonov–Bohm Scattering

View through CrossRef
ABSTRACT This paper proposes a novel approach to controlling the amplitude of the Aharonov–Bohm effect by utilizing a conformal mapping‐based method. The core idea is to leverage the form‐invariance of the Schrödinger equation under conformal transformations, which allows for the manipulation of the scattering amplitude through a carefully designed scalar potential. This approach extends the concept of transformation physics into charge‐flux systems, providing a practical means to steer matter waves influenced by magnetic flux interactions. The paper comprehensively discusses how scalar potentials, determined by conformal mappings, can counterbalance the Aharonov–Bohm scattering, thus offering a new avenue for quantum control by local means rather than purely through non‐local flux interactions.
Title: Controlling the Aharonov–Bohm Scattering
Description:
ABSTRACT This paper proposes a novel approach to controlling the amplitude of the Aharonov–Bohm effect by utilizing a conformal mapping‐based method.
The core idea is to leverage the form‐invariance of the Schrödinger equation under conformal transformations, which allows for the manipulation of the scattering amplitude through a carefully designed scalar potential.
This approach extends the concept of transformation physics into charge‐flux systems, providing a practical means to steer matter waves influenced by magnetic flux interactions.
The paper comprehensively discusses how scalar potentials, determined by conformal mappings, can counterbalance the Aharonov–Bohm scattering, thus offering a new avenue for quantum control by local means rather than purely through non‐local flux interactions.

Related Results

LVIV (LEMBERG) ARTEFACTS OF THEOBALD BÖHM’S FLUTE WORKSHOP
LVIV (LEMBERG) ARTEFACTS OF THEOBALD BÖHM’S FLUTE WORKSHOP
The analysis of artefacts from Theobald Böhm’s Second Flute Workshop is crucial for understanding 19th-century music industry developments and craftsmanship. This study aims to ana...
Is inelastic cotunneling phase coherent?
Is inelastic cotunneling phase coherent?
For low biases the linear conductance of quantum dots is based on elastic transport processes. At finite bias in the Coulomb blockade regime, inelastic cotunneling sets in once the...
Gauge Theories in Rainbow Space-Time
Gauge Theories in Rainbow Space-Time
We construct Maxwell and Yang-Mills theories in the rainbow space-time. We show that the time-dependent Aharonov-Bohm phases for both Abelian and non-Abelian gauge fields are non-z...
Measurement of scattering intensity distribution of single microparticles/nanoclusters based on laser levitation
Measurement of scattering intensity distribution of single microparticles/nanoclusters based on laser levitation
The scattering measurement of particulates in gaseous medium is helpful in understanding light transmission, laser detection, combustion radiation and atmospheric environment. In o...
Novel system for measuring the scattering of the cornea and the lens
Novel system for measuring the scattering of the cornea and the lens
Spatial vision features play a key role in human vision quality, which in turn depends on the retinal image quality and posterior neural processing. The retinal image is affected b...
Non‐Relativistic Limit of Dirac Hamiltonians With Aharonov–Bohm Fields
Non‐Relativistic Limit of Dirac Hamiltonians With Aharonov–Bohm Fields
ABSTRACT We characterize the families of self‐adjoint Dirac and Schrödinger operators with Aharonov–Bohm magnetic field, and we exploit the non‐relativistic limit...
Why Bohm was never a determinist
Why Bohm was never a determinist
Abstract Bohm’s interpretation of quantum mechanics has generally been received as an attempt to restore the determinism of classical physics. However, although t...
Introduction to neutron scattering
Introduction to neutron scattering
AbstractNeutron scattering is a very high-performance method for studying the structure and dynamics of condensed matter with similar approaches in wide ranges of space and time, m...

Back to Top