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Chapter 1-
Chapter 1-

Two-photon ablation with 1278nm laser radiation
Two-photon ablation with 1278nm laser radiation

... complex optics to deliver the light and when, as is becoming more and more common, short pulses are used, there is an additional wavelength dependence added by the dispersion of the optical system itself [1]. Precise intracellular microsurgery and in-depth penetration of light into tissue are both e ...
Magic-angle Spinning Nuclear Magnetic Resonance Studies of
Magic-angle Spinning Nuclear Magnetic Resonance Studies of

Plasmons, polaritons What are plasmons and what are
Plasmons, polaritons What are plasmons and what are

Slow Light - Duke Physics
Slow Light - Duke Physics

... ng is the group index of the material. We see that ng differs from the phase index by a term that depends on the dispersion of the refractive index dn/dω. Slow-light effects invariably make use of the rapid variation of refractive index that occurs in the vicinity of a material resonance. Slow light ...
The Spectrophotometer
The Spectrophotometer

Frequency-Domain Spectroscopy Using 280 nm and 300 nm
Frequency-Domain Spectroscopy Using 280 nm and 300 nm

powerpoint
powerpoint

... electron orbiting around the nucleus also makes a magnet. These two magnetic moments can interact and, depending on the relative orientations of the two moments, orbital energy can be slightly altered. We use the so-called Na D line as a paradigm. We use the first-order perturbation theory to descri ...
Linear Zeeman effect for collective modes in He3-A
Linear Zeeman effect for collective modes in He3-A

Time-Gated Photoionization Spectroscopy Demonstrated for Cesium Rydberg Wave Packets
Time-Gated Photoionization Spectroscopy Demonstrated for Cesium Rydberg Wave Packets

... break the parabolic symmetry for the Rydberg electron. This scattering event can change the direction of the wave packet and cause it to travel down field giving rise to the observed peaks in the ionization spectrum. At 1.0 kVycm and Ec , E , 0, k states belonging to different n manifolds overlap. T ...
pptx
pptx

Ideal n-body correlations with massive particles
Ideal n-body correlations with massive particles

Sluggish light for radio-frequency true-time-delay
Sluggish light for radio-frequency true-time-delay

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ppt - Harvard Condensed Matter Theory group

Relation between s-Polarized and p-Polarized Internal Reflection
Relation between s-Polarized and p-Polarized Internal Reflection

Raman spectroscopy: Watching a molecule breathe
Raman spectroscopy: Watching a molecule breathe

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Development of luminescent probes for selective detection of double

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Chapter #20 Nuclear Chemistry

... The strong nuclear force keeps the nucleus together by overcoming the repulsive force of the protons. Neutrons are present to help dissipate the repulsive forces between the protons As the atomic number (number of protons) increases, so does the number of neutrons to shield the repulsion of the prot ...
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Supporting Information For the discussion of the optical absorption

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6.2 - Hockerill Students

... `stability line' curves upwards. Heavier nuclei need more and more neutrons to be stable. Can we explain why? ...
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Originally published as “Ultrafast spin polarization in a multiferroic

TDR XFEL workshop series Atomic, molecular and cluster physics
TDR XFEL workshop series Atomic, molecular and cluster physics

... Recently, the interest for experimental and theoretical investigations of interaction processes of x-ray radiation with atom has increased [1,2]. Similar investigations are very important for modern fundamental and applied physics. So, the explorations of non-linear processes of the x-ray photons in ...
Introduction to the principles of Atomic Spectroscopy
Introduction to the principles of Atomic Spectroscopy

... XRF instrument measures the photon energy from the fluorescence to identify the element and the intensity of the photon to measure the amount of element in the sample ...
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Two-dimensional nuclear magnetic resonance spectroscopy

Two-dimensional nuclear magnetic resonance spectroscopy (2D NMR) is a set of nuclear magnetic resonance spectroscopy (NMR) methods which give data plotted in a space defined by two frequency axes rather than one. Types of 2D NMR include correlation spectroscopy (COSY), J-spectroscopy, exchange spectroscopy (EXSY), and nuclear Overhauser effect spectroscopy (NOESY). Two-dimensional NMR spectra provide more information about a molecule than one-dimensional NMR spectra and are especially useful in determining the structure of a molecule, particularly for molecules that are too complicated to work with using one-dimensional NMR.The first two-dimensional experiment, COSY, was proposed by Jean Jeener, a professor at the Université Libre de Bruxelles, in 1971. This experiment was later implemented by Walter P. Aue, Enrico Bartholdi and Richard R. Ernst, who published their work in 1976.
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