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Related papers: Energy of Quantum Coulomb Liquid

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A quantum-dot thermal transistor consisting of three Coulomb-coupled quantum dots coupled to respective electronic reservoirs by tunnel contacts is established. The heat flows through the collector and emitter can be controlled by the…

Applied Physics · Physics 2018-11-29 Yanchao Zhang , Zhimin Yang , Xin Zhang , Bihong Lin , Guoxing Lin , Jincan Chen

It is generally assumed that solid hydrogen will transform into a metallic alkali-like crystal at sufficiently high pressure. However, some theoretical models have also suggested that compressed hydrogen may form an unusual two-component…

Materials Science · Physics 2009-11-10 Stanimir A. Bonev , Eric Schwegler , Tadashi Ogitsu , Giulia Galli

We use a recent approach [Phys. Rev. Letters, {\bf 84}, 959 (2000)] for including Coulomb interactions in quantum systems via a classical mapping of the pair-distribution functions (PDFs) for a study of the 2-D electron gas. As in the 3-D…

Strongly Correlated Electrons · Physics 2009-11-07 François Perrot , M. W. C. Dharma-wardana

The internal energy of high-density hydrogen plasmas in the temperature range $T = 10,000 ... 50,000 K$ is calculated by two different analytical approximation schemes (method of effective ion-ion interaction potential - EIIP and Pad\'e…

Plasma Physics · Physics 2007-07-29 S. A. Trigger , W. Ebeling , V. S. Filinov , V. E. Fortov , M. Bonitz

Practical expressions are derived for a rapid and accurate evaluation of electric and thermal conductivities and thermopower of degenerate relativistic electrons along quantizing magnetic fields in outer neutron star crusts. The electron…

Astrophysics · Physics 2011-05-23 A. Y. Potekhin , D. G. Yakovlev

We introduce and prove a maximum principle for a natural quantity related to the $k$-point correlation function of the classical one-component Coulomb gas. As an application, we show that the gas is confined to the droplet by a well-known…

Probability · Mathematics 2025-01-07 Eric Thoma

An approximation-free, numerically efficient algorithm is presented for the Hamiltonian eigen-states of the Stark-Hydrogen problem describing a quantum particle exposed to the central Coulomb force and a homogeneous external field. As an…

Atomic Physics · Physics 2022-03-17 Seyedmohammad Yusofsani , Mroslav Kolesik

The model under consideration is an asymmetric two-dimensional Coulomb gas of positively (q_1=+1) and negatively (q_2=-1/2) charged pointlike particles, interacting via a logarithmic potential. This continuous system is stable against…

Statistical Mechanics · Physics 2007-05-23 L. Samaj

The contour integrals, occurring in the arbitrary-order phase-integral quantization conditions given in a previous paper, are in the first- and third-order approximations expressed in terms of complete elliptic integrals in the case that…

Exactly Solvable and Integrable Systems · Physics 2015-06-26 N. Athavan , N. Fröman , M. Lakshmanan

The one-component Coulomb gas on the sphere, consisting on $N$ unit charges interacting via a logarithmic potential, and in the presence of two external charges each of strength proportional to $N$, is considered. There are two spherical…

Mathematical Physics · Physics 2025-01-10 Sung-Soo Byun , Peter J. Forrester , Sampad Lahiry

In this work we give a comprehensive derivation of an exact and numerically feasible method to perform ab-initio calculations of quantum particles interacting with a quantized electromagnetic field. We present a hierachy of…

The condensation energy of the homogeneous electron gas is calculated within the density functional theory for superconductors. Purely electronic considerations include the exchange energy exactly and the correlation energy on a level of…

Superconductivity · Physics 2013-04-02 M. Wierzbowska , J. W. Krogh

An exact solution is given for a two-dimensional model of a Coulomb gas, more general than the previously solved ones. The system is made of a uniformly charged background, positive particles, and negative particles, on the surface of a…

Condensed Matter · Physics 2009-10-28 P. J. Forrester , B. Jancovici

Neutron-rich light nuclei and their reactions play an important role for the creation of chemical elements. Here, data from a Coulomb dissociation experiment on $^{20,21}$N are reported. Relativistic $^{20,21}$N ions impinged on a lead…

Nuclear Experiment · Physics 2016-07-04 Marko Röder , Tatsuya Adachi , Yulia Aksyutina , Juan Alcantara , Sebastian Altstadt , Hector Alvarez-Pol , Nicholas Ashwood , Leyla Atar , Thomas Aumann , Vladimir Avdeichikov , M. Barr , Saul Beceiro , Daniel Bemmerer , Jose Benlliure , Carlos Bertulani , Konstanze Boretzky , Maria J. G. Borge , G. Burgunder , Manuel Caamano , Christoph Caesar , Enrique Casarejos , Wilton Catford , Joakim Cederkall , S. Chakraborty , Marielle Chartier , Leonid Chulkov , Dolores Cortina-Gil , Raquel Crespo , Ushasi Datta Pramanik , Paloma Diaz-Fernandez , Iris Dillmann , Zoltan Elekes , Joachim Enders , Olga Ershova , A. Estrade , F. Farinon , Luis M. Fraile , Martin Freer , M. Freudenberger , Hans Fynbo , Daniel Galaviz , Hans Geissel , Roman Gernhäuser , Kathrin Göbel , Pavel Golubev , Diego Gonzalez Diaz , Julius Hagdahl , Tanja Heftrich , Michael Heil , Marcel Heine , Andreas Heinz , Ana Henriques , Matthias Holl , G. Ickert , Alexander Ignatov , Bo Jakobsson , Hakan Johansson , Björn Jonson , Nasser Kalantar-Nayestanaki , Rituparna Kanungo , Aleksandra Kelic-Heil , Ronja Knöbel , Thorsten Kröll , Reiner Krücken , J. Kurcewicz , Nikolaus Kurz , Marc Labiche , Christoph Langer , Tudi Le Bleis , Roy Lemmon , Olga Lepyoshkina , Simon Lindberg , Jorge Machado , Justyna Marganiec , Magdalena Mostazo Caro , Alina Movsesyan , Mohammad Ali Najafi , Thomas Nilsson , Chiara Nociforo , Valerii Panin , Stefanos Paschalis , Angel Perea , Marina Petri , S. Pietri , Ralf Plag , A. Prochazka , Md. Anisur Rahaman , Ganna Rastrepina , Rene Reifarth , Guillermo Ribeiro , M. Valentina Ricciardi , Catherine Rigollet , Karsten Riisager , Dominic Rossi , Jose Sanchez del Rio Saez , Deniz Savran , Heiko Scheit , Haik Simon , Olivier Sorlin , V. Stoica , Branislav Streicher , Jon Taylor , Olof Tengblad , Satoru Terashima , Ronja Thies , Yasuhiro Togano , Ethan Uberseder , J. Van de Walle , Paulo Velho , Vasily Volkov , Andreas Wagner , Felix Wamers , Helmut Weick , Mario Weigand , Carl Wheldon , G. Wilson , Christine Wimmer , J. S. Winfield , Philip Woods , Dmitry Yakorev , Mikhail Zhukov , Andreas Zilges , Kai Zuber

In this work we continue and extend our recent work on the correlation energy of the quantized electron gas of uniform density at temperature $T=0$. As before we utilize the methods, properties, and results obtained by means of classical…

Statistical Mechanics · Physics 2017-10-11 Enrique Lomba , Johan S. Høye

We calculate the melting line of atomic hydrogen and deuterium up to 900 GPa with path-integral Monte Carlo using a machine-learned interatomic potential. We improve upon previous simulations of melting by treating the electrons with…

Materials Science · Physics 2024-10-01 Kevin K. Ly , David M. Ceperley

A realistic evaluation of Coulomb potential has been made for some selected nuclei using the available model-independent data for the charge density and the recent development of Coulomb energy-density functional. Within the Woods-Saxon…

Nuclear Theory · Physics 2023-03-03 L. Xayavong , Y. Lim

We study the energy-transfer rate for electrons in a double-quantum-well structure, where the layers are coupled through screened Coulomb interactions. The energy-transfer rate between the layers (similar to the Coulomb drag effect in which…

Condensed Matter · Physics 2009-11-07 R. T. Senger , B. Tanatar

Any interface boundary in an equilibrium system of Coulomb particles is accompanied by the existence of a finite difference in the average electrostatic potential through this boundary. This interface potential drop is a thermodynamic…

Plasma Physics · Physics 2011-04-15 Igor Iosilevskiy , Alexander Chigvintsev

We study a large class of strongly interacting condensate-like materials, which can be characterized by a normalizable complex-valued function. A quantum wave equation with logarithmic nonlinearity is known to describe such systems, at…

Statistical Mechanics · Physics 2020-01-15 Konstantin G. Zloshchastiev
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