First-principles calculations of long-range intermolecular dispersion forces Auayporn Jiemchooroj Link¨
... The four fundamental forces known to physics—strong, electromagnetic, weak, and gravitational—are believed to explain all physical processes and structures observed in nature. In view of the microscopic world of atoms and molecules, electromagnetic forces are responsible for chemical bonds that keep ...
... The four fundamental forces known to physics—strong, electromagnetic, weak, and gravitational—are believed to explain all physical processes and structures observed in nature. In view of the microscopic world of atoms and molecules, electromagnetic forces are responsible for chemical bonds that keep ...
Chapter 2
... 7. Calculate the Fermi energy and the conductivity at room temperature for germanium containing 5 x 1016 arsenic atoms per cubic centimeter. (Hint: Use the mobility of the electrons in the host material.) 8. Consider a silicon crystal containing 1012 phosphorous atoms per cubic centimeter. Is the co ...
... 7. Calculate the Fermi energy and the conductivity at room temperature for germanium containing 5 x 1016 arsenic atoms per cubic centimeter. (Hint: Use the mobility of the electrons in the host material.) 8. Consider a silicon crystal containing 1012 phosphorous atoms per cubic centimeter. Is the co ...
Titles and Abstracts
... and nucleon –nucleus scattering [8-14]. We shall also search for a fundamental rationale for pseudospin symmetry in terms of chiral symmetry breaking as suggested by QCD sum rules [15]. A starting point is an investigation of pseudospin breaking in the nucleon-nucleon interaction by studying nucleon ...
... and nucleon –nucleus scattering [8-14]. We shall also search for a fundamental rationale for pseudospin symmetry in terms of chiral symmetry breaking as suggested by QCD sum rules [15]. A starting point is an investigation of pseudospin breaking in the nucleon-nucleon interaction by studying nucleon ...
Introduction to Computational Chemistry
... some background knowledge in spectroscopy. The elementary parts of these experiments should be appropriate for all students that manage to work through part I while some subjects in these experiments are s ...
... some background knowledge in spectroscopy. The elementary parts of these experiments should be appropriate for all students that manage to work through part I while some subjects in these experiments are s ...
CENTRAL FORCE PROBLEMS
... Figure 3 illustrates the sense in which the one -body problem posed by (5.2) is “equivalent” to the two -body problem from which it sprang. x1 , x2 , . . . , xN } mark (relative to an inertial DIGRESSION:6 Suppose vectors {x frame) the instantaneous positions of a population {m1 , m2 , . . . , mN } ...
... Figure 3 illustrates the sense in which the one -body problem posed by (5.2) is “equivalent” to the two -body problem from which it sprang. x1 , x2 , . . . , xN } mark (relative to an inertial DIGRESSION:6 Suppose vectors {x frame) the instantaneous positions of a population {m1 , m2 , . . . , mN } ...
112, 110404 (2014)
... Introduction.—Emergent quantum states derived from interactions can exhibit rich structure because they are, by definition, not adiabatically connected to the underlying single-particle states. Two-dimensional (2D) electron gases placed in a strong magnetic field offer seminal examples. In the absen ...
... Introduction.—Emergent quantum states derived from interactions can exhibit rich structure because they are, by definition, not adiabatically connected to the underlying single-particle states. Two-dimensional (2D) electron gases placed in a strong magnetic field offer seminal examples. In the absen ...
Rydberg assisted light shift imbalance induced blockade in an atomic ensemble ,
... two-level atoms does indeed behave like a single two-level system. This property has been used to realize quantum memory elements using such an ensemble [12,13]. However, any protocol that aims to create a two qubit logic gate (such as a CNOT gate) between two ensembles, necessary for realizing a qu ...
... two-level atoms does indeed behave like a single two-level system. This property has been used to realize quantum memory elements using such an ensemble [12,13]. However, any protocol that aims to create a two qubit logic gate (such as a CNOT gate) between two ensembles, necessary for realizing a qu ...
Axioms of Quantum Mechanics
... 3.1 Introduction Every physical theory is formulated in terms of mathematical objects. It is thus necessary to establish a set of rules to map physical concepts and objects into mathematical objects that we use to represent them5 . Sometimes this mapping is evident, as in classical mechanics, while ...
... 3.1 Introduction Every physical theory is formulated in terms of mathematical objects. It is thus necessary to establish a set of rules to map physical concepts and objects into mathematical objects that we use to represent them5 . Sometimes this mapping is evident, as in classical mechanics, while ...
Full text in PDF form
... Abstract: It is shown that the classical laws of thermodynamics require that mechanical systems must exhibit energy that becomes unavailable to do useful work. In thermodynamics, this type of energy is called entropy. It is further shown that these laws require two metrical manifolds, equations of m ...
... Abstract: It is shown that the classical laws of thermodynamics require that mechanical systems must exhibit energy that becomes unavailable to do useful work. In thermodynamics, this type of energy is called entropy. It is further shown that these laws require two metrical manifolds, equations of m ...
These notes
... have involved sophisticated diagramatic techniques such as Feynman diagrams, which are all based on the existence of a well controlled limit of zero interaction Green’s function. It was realized in the fifties, with the theory of BCS superconductivity [8] that attractive interactions cause a breakdo ...
... have involved sophisticated diagramatic techniques such as Feynman diagrams, which are all based on the existence of a well controlled limit of zero interaction Green’s function. It was realized in the fifties, with the theory of BCS superconductivity [8] that attractive interactions cause a breakdo ...
Quantum Mechanics: Postulates
... Note: The Hamiltonian operator Ĥ contains the kinetic and potential operators (as discussed above). This equation reflects the deterministic (Newtonian) nature of particles/waves. It appears to be in contrast to Postulate 4 (many observations lead to different measured observables, each weighted di ...
... Note: The Hamiltonian operator Ĥ contains the kinetic and potential operators (as discussed above). This equation reflects the deterministic (Newtonian) nature of particles/waves. It appears to be in contrast to Postulate 4 (many observations lead to different measured observables, each weighted di ...
North Carolina Test of Physical Science
... A student builds an electromagnet using a variable power source and 40 turns of wire. The electromagnet is used to pick up metal paper clips. The student changes the voltage and counts the number of paper clips that are picked up. Which table could be the data the student collected? A ...
... A student builds an electromagnet using a variable power source and 40 turns of wire. The electromagnet is used to pick up metal paper clips. The student changes the voltage and counts the number of paper clips that are picked up. Which table could be the data the student collected? A ...