Quantum theory of spin waves in finite chiral spin chains
... magnetic states depending on the interplay between spin interactions, size of the chain, and their dissipative coupling to the environment. Thus, experiments reveal that different spin chains can behave like quantum antiferromagnets [1], classical antiferromagnets [3,6], and classical spin spirals [ ...
... magnetic states depending on the interplay between spin interactions, size of the chain, and their dissipative coupling to the environment. Thus, experiments reveal that different spin chains can behave like quantum antiferromagnets [1], classical antiferromagnets [3,6], and classical spin spirals [ ...
Balancing Chemical Equations
... Atomic and molecular weight The atomic weight is the numerical value tabulated for the mass of each atom in the periodic table in atomic units. The use of the word “weight” is not precise here since weight in physics represents a force (w = mg). However, the name atomic weight is so ingrained that ...
... Atomic and molecular weight The atomic weight is the numerical value tabulated for the mass of each atom in the periodic table in atomic units. The use of the word “weight” is not precise here since weight in physics represents a force (w = mg). However, the name atomic weight is so ingrained that ...
Basic Quantum Mechanics in Coordinate, Momentum and
... between the coordinate, momentum and phase space representations of quantum mechanics. First, the ground‐state coordinate space eigenfunction for the harmonic oscillator is used for several traditional quantum mechanical calculations. Then the coordinate wave function is Fourier transformed into the ...
... between the coordinate, momentum and phase space representations of quantum mechanics. First, the ground‐state coordinate space eigenfunction for the harmonic oscillator is used for several traditional quantum mechanical calculations. Then the coordinate wave function is Fourier transformed into the ...
Few-electron quantum dots
... hand, a negligible effect on the Zeeman spin splitting, gµB B, which is only ∼0.025 meV T−1 in GaAs, since gGaAs = −0.44. A magnetic field therefore is about 70 times more effective for changing the orbital energy than for changing the Zeeman spin splitting in GaAs. We will thus neglect Zeeman spin ...
... hand, a negligible effect on the Zeeman spin splitting, gµB B, which is only ∼0.025 meV T−1 in GaAs, since gGaAs = −0.44. A magnetic field therefore is about 70 times more effective for changing the orbital energy than for changing the Zeeman spin splitting in GaAs. We will thus neglect Zeeman spin ...
Molecular Orbital Theory
... constructed by adding the mathematical functions for the two 1s atomic orbitals that come together to form this molecule. Another orbital is formed by subtracting one of these functions from the other, as shown in the figure below. One of these orbitals is called a bonding molecular orbital because ...
... constructed by adding the mathematical functions for the two 1s atomic orbitals that come together to form this molecule. Another orbital is formed by subtracting one of these functions from the other, as shown in the figure below. One of these orbitals is called a bonding molecular orbital because ...
Midterm Review Teacher Answer Key December 21, 2011 `see
... Refer to the accompanying completed graph of ionic radius versus atomic number as shown: a. One point is awarded for drawing an appropriate scale on the y-axis. An appropriate scale is one that is large enough for a trend to be seen. [1 point] b. One point is awarded for plotting all four points co ...
... Refer to the accompanying completed graph of ionic radius versus atomic number as shown: a. One point is awarded for drawing an appropriate scale on the y-axis. An appropriate scale is one that is large enough for a trend to be seen. [1 point] b. One point is awarded for plotting all four points co ...
84, 085123 (2011)
... such a high carrier density n and the high mobility of electrons in the 2DEG,27 the effects of disorder can be neglected.19,27 To reduce the required magnitude of V0 , a two-dimensional hole gas may be used, which has larger effective mass m∗h = 0.43me , leading to much smaller ELh = 0.03EL . Finall ...
... such a high carrier density n and the high mobility of electrons in the 2DEG,27 the effects of disorder can be neglected.19,27 To reduce the required magnitude of V0 , a two-dimensional hole gas may be used, which has larger effective mass m∗h = 0.43me , leading to much smaller ELh = 0.03EL . Finall ...
Infrared Vibration-Rotation Spectroscopy of HCl and DCl
... where mA and mB are the isotopic masses of atoms A and B. The probability of a change in a particular state of a molecule is dictated by quantum mechanical constraints known as selection rules. For instance, the selection rule for diatomic molecule rotational transitions allows state changes in whic ...
... where mA and mB are the isotopic masses of atoms A and B. The probability of a change in a particular state of a molecule is dictated by quantum mechanical constraints known as selection rules. For instance, the selection rule for diatomic molecule rotational transitions allows state changes in whic ...
Ultrafast geometric control of a single qubit using chirped pulses
... gates have been proposed for quantum computation [1–3]. Various combinations of quantum gates have been intensively discussed in the literature related to the universality in quantum computation [1, 4–6]. To perform quantum computation, one must have two major building blocks at their disposal: (i) ...
... gates have been proposed for quantum computation [1–3]. Various combinations of quantum gates have been intensively discussed in the literature related to the universality in quantum computation [1, 4–6]. To perform quantum computation, one must have two major building blocks at their disposal: (i) ...