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Chapter 1 Introduction
Chapter 1 Introduction

Processing quantum information in diamond
Processing quantum information in diamond

Spin in Physical Space, Internal Space, and Hilbert
Spin in Physical Space, Internal Space, and Hilbert

Electron Spin or “Classically Non-Describable Two - Philsci
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... tuning has some features that will, at first, seem strange: there is significant hysteresis and the wavelength does not always tune smoothly, so there is not always a one–to–one correspondence of voltage and wavelength. With the magnetic field B0 off, use the video fluoresence signal to tune the laser to ...
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The qubits and the equations of physics

... 5. Reversibility is restored only if one extends the parameters to the field of complex numbers 6. Time emerges as a uniform parameter that tracks the sequence of actions and we derive a dynamical equation for the qubit. 7. A qubit needs a carrier, a particle of mass m, its presence in the qubit dyn ...
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Introduction to Molecular Magnets

Spin-density wave in a quantum wire
Spin-density wave in a quantum wire

Spin and photophysics of carbon-antisite potential quantum bit Linköping University Post Print
Spin and photophysics of carbon-antisite potential quantum bit Linköping University Post Print

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3. Angular Momentum States.

... r, from the axis of rotation, and in the other case the center of mass is at a distance, r, from the axis of rotation. Quantum Electron Spin Angular Momentum The results of classical angular momentum provide a clear physical model for representation of orbital and spin angular momentum in terms of ...
Physics of Single-Electron Transistors and Doped Mott Insulators M. Kastner 
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... La2CuO4 (TN = 325 K) over the temperature range 337-824 K. Incident neutron energies varying from 14.7-115 meV have been employed in order to guarantee that the energy integration is carried out properly. The results so obtained for the spin-correlation length as a function of temperature when expre ...
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connection between wave functions in the dirac and

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when the electron falls apart - IFSC-USP

... this the system's true, exact excitation spectrum is not elecwas first envisaged by Elliott Lieb and Fred Wu5 in a tron-like at all. spectacular theoretical paper published in 1968 under the There was a second feature, again foreshadowed in misleading title "Absence of Mott Transition in [the One- m ...
Atomic Structure
Atomic Structure

... The experiment of Stern and Gerlach demonstrated the existence of electron spin (see Figure 41.17 below). The z-component of the spin angular momentum has only two possible values (corresponding to ms = +1/2 and ms = –1/2). B  ...
Discrete Transformations: Parity
Discrete Transformations: Parity

Karthik V. Raman Realizing Spintronic devices using organic
Karthik V. Raman Realizing Spintronic devices using organic

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Intro to particle physics 1. Particles, Fields

... So far we have used the group U(1) for QED:Every symmetry is described as a "group" The mathematics for symmetry is called Group Theory. Here, we need to use Lie Groups like U(1), SU(2), SU(3)… Electroweak and strong interactions (Quantum chromodynamics) involve SU(2) and SU(3). Hypothetical "grand ...
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... • Fine structure of the atoms spectral lines : each line is made of several components very close in frequency • “Abnormal » Zeeman effect : Each spectral line is divided in a given number of equidistant lines when the atom is in an uniform magnetic field. «Anomaly» : the atoms of Z odd (ex. Hydroge ...
Wave-vector-dependent spin filtering and spin transport through
Wave-vector-dependent spin filtering and spin transport through

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Spin (physics)

In quantum mechanics and particle physics, spin is an intrinsic form of angular momentum carried by elementary particles, composite particles (hadrons), and atomic nuclei.Spin is one of two types of angular momentum in quantum mechanics, the other being orbital angular momentum. The orbital angular momentum operator is the quantum-mechanical counterpart to the classical notion of angular momentum: it arises when a particle executes a rotating or twisting trajectory (such as when an electron orbits a nucleus). The existence of spin angular momentum is inferred from experiments, such as the Stern–Gerlach experiment, in which particles are observed to possess angular momentum that cannot be accounted for by orbital angular momentum alone.In some ways, spin is like a vector quantity; it has a definite magnitude, and it has a ""direction"" (but quantization makes this ""direction"" different from the direction of an ordinary vector). All elementary particles of a given kind have the same magnitude of spin angular momentum, which is indicated by assigning the particle a spin quantum number.The SI unit of spin is the joule-second, just as with classical angular momentum. In practice, however, it is written as a multiple of the reduced Planck constant ħ, usually in natural units, where the ħ is omitted, resulting in a unitless number. Spin quantum numbers are unitless numbers by definition.When combined with the spin-statistics theorem, the spin of electrons results in the Pauli exclusion principle, which in turn underlies the periodic table of chemical elements.Wolfgang Pauli was the first to propose the concept of spin, but he did not name it. In 1925, Ralph Kronig, George Uhlenbeck and Samuel Goudsmit at Leiden University suggested a physical interpretation of particles spinning around their own axis. The mathematical theory was worked out in depth by Pauli in 1927. When Paul Dirac derived his relativistic quantum mechanics in 1928, electron spin was an essential part of it.
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