Turnitin
降AI改写
早检测系统
早降重系统
Turnitin-UK版
万方检测-期刊版
维普编辑部版
Grammarly检测
Paperpass检测
checkpass检测
PaperYY检测
Complex plasmas: a laboratory for strong correlations
Strong correlations—cooperative behavior due to many-particle interactions—are
omnipresent in nature. They occur in electrolytic solutions, dense plasmas, ultracold ions …
omnipresent in nature. They occur in electrolytic solutions, dense plasmas, ultracold ions …
Quantum breathing mode of trapped particles: From nanoplasmas to ultracold gases
JW Abraham, M Bonitz - Contributions to Plasma Physics, 2014 - Wiley Online Library
Particles spatially confined in trap** potentials have attracted increasing interest over the
recent decade. Of particular importance are systems of charged particles, such as non …
recent decade. Of particular importance are systems of charged particles, such as non …
Long-range one-dimensional gravitational-like interaction in a neutral atomic cold gas
A quasiresonant laser induces a long-range attractive force within a cloud of cold atoms. We
take advantage of this force to build in the laboratory a system of particles with a one …
take advantage of this force to build in the laboratory a system of particles with a one …
Controlling strongly correlated dust clusters with lasers
H Thomsen, P Ludwig, M Bonitz… - Journal of Physics D …, 2014 - iopscience.iop.org
Lasers have been used extensively to manipulate matter in a controlled way–from single
atoms and molecules up to macroscopic materials. They are particularly valuable for the …
atoms and molecules up to macroscopic materials. They are particularly valuable for the …
Magnetic field effects and waves in complex plasmas
H Kählert, A Melzer, M Puttscher, T Ott… - The European Physical …, 2018 - Springer
Magnetic fields can modify the physical properties of a complex plasma in various different
ways. Weak magnetic fields in the mT range affect only the electrons while strong fields in …
ways. Weak magnetic fields in the mT range affect only the electrons while strong fields in …
Breathing mode of nanoclusters: Definition and comparison to a continuous medium model
B Lan, DY Sun - Physical Review B, 2021 - APS
Breathing modes are closely related to many physical properties of nanoclusters. Decades
of research, however, failed to formulate a general and unambiguous definition. Here we …
of research, however, failed to formulate a general and unambiguous definition. Here we …
Dynamics of strongly correlated quantum systems from an extended Singwi‐Tosi‐Land‐Sjölander closure for the BBGKY hierarchy
H Kählert - Contributions to Plasma Physics, 2024 - Wiley Online Library
The BBGKY hierarchy in the Wigner representation is used with an extended Singwi‐Tosi‐
Land‐Sjölander (STLS) ansatz for the two‐particle distribution function [H. Kählert, GJ …
Land‐Sjölander (STLS) ansatz for the two‐particle distribution function [H. Kählert, GJ …
Interplay between lattice, orbital, and magnetic degrees of freedom in the chain-polymer Cu (II) breathing crystals
SV Streltsov, MV Petrova, VA Morozov… - Physical Review B …, 2013 - APS
The chain-polymer Cu (II)“breathing crystals” C 21 H 19 CuF 12 N 4 O 6 were studied using
the x-ray diffraction and ab initio band structure calculations. We show that the crystal …
the x-ray diffraction and ab initio band structure calculations. We show that the crystal …
Quantum breathing mode of trapped systems in one and two dimensions
We investigate the quantum breathing mode (monopole oscillation) of trapped fermionic
particles with Coulomb and dipole interaction in one and two dimensions. This collective …
particles with Coulomb and dipole interaction in one and two dimensions. This collective …
Dynamics of strongly correlated and strongly inhomogeneous plasmas
H Kählert, GJ Kalman, M Bonitz - Physical Review E, 2014 - APS
Kinetic and fluid equations are derived for the dynamics of classical inhomogeneous
trapped plasmas in the strong coupling regime. The starting point is an extended Singwi …
trapped plasmas in the strong coupling regime. The starting point is an extended Singwi …