Search results for "Autoionization"

showing 10 items of 14 documents

Studies of narrow autoionizing resonances in gadolinium

2003

The autoionization (AI) spectrum of gadolinium between the first and second limits has been investigated by triple-resonance excitation with high-resolution cw lasers. A large number of narrow AI resonances have been observed and assigned total angular momentum J values. The resonances are further divided into members of AI Rydberg series converging to the second limit or other ''interloping'' levels. Fine structure in the Rydberg series has been identified and interpreted in terms of Jc j coupling. A number of detailed studies have been performed on the interloping resonances: These include lifetime determination by lineshape analysis, isotope shifts, hyperfine structure, and photoionizati…

Angular momentumChemistryPhotoionizationAtomic and Molecular Physics and OpticsAnalytical Chemistrysymbols.namesakeAutoionizationTotal angular momentum quantum numberExcited stateRydberg formulasymbolsPhysics::Atomic PhysicsAtomic physicsInstrumentationHyperfine structureSpectroscopyExcitationSpectrochimica Acta Part B: Atomic Spectroscopy
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Triple-resonance autoionization of uranium optimized for diode laser excitation

2007

Abstract The photoionization of uranium via three-step excitation has been optimized for isotope selective trace analysis. A search found 13 new J = 6, 7, and 8 odd-parity states in the 36,850–37,200 cm− 1 region that allow blue–red–red three-photon excitation at wavelengths favorable for commercial diode laser systems. From each of these 13 states, near-threshold autoionization spectra were recorded at a resolution of 3 × 10− 4 cm− 1. Some 30 even-parity autoionizing levels with J = 5 to 9 have also been observed and characterized. Comparison of the spectra allows J assignment for the new intermediate levels as well as selection of an optimized path for trace analysis. We show that, for a …

ChemistryResonancePhotoionizationLaserAtomic and Molecular Physics and OpticsSpectral lineAnalytical ChemistrySemiconductor laser theorylaw.inventionAutoionizationlawAtomic physicsSpectroscopyInstrumentationSpectroscopyExcitationSpectrochimica Acta Part B: Atomic Spectroscopy
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Strong enhancement of Penning ionization for asymmetric atom pairs in cold Rydberg gases: the Tom and Jerry effect

2016

We consider Penning ionization of Rydberg atom pairs as an Auger-type process induced by the dipole–dipole interaction and employ semiclassical formulae for dipole transitions to calculate the autoionization width as a function of the principal quantum numbers, n d , n i , of both atoms. While for symmetric atom pairs with the well-known increase of the autoionization width with increasing n 0 is obtained, the result for asymmetric pairs is counterintuitive—for a fixed n i of the ionizing atom of the pair, the autoionization width strongly increases with decreasing n d of the de-excited atom. For H Rydberg atoms this increase reaches two orders of magnitude at the maximum of the n d depende…

Condensed Matter::Quantum GasesPhysicsPhotoionizationCondensed Matter Physics01 natural sciencesAtomic and Molecular Physics and Optics010305 fluids & plasmassymbols.namesakeAutoionizationPenning ionizationIonization0103 physical sciencesRydberg atomPrincipal quantum numberPhysics::Atomic and Molecular ClustersRydberg formulasymbolsRydberg matterPhysics::Atomic PhysicsAtomic physics010306 general physicsJournal of Physics B: Atomic, Molecular and Optical Physics
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Resonant Photoelectron Diffraction

2013

A layout of a resonant photoelectron diffraction, RESPED, experiment is described from the theoretical basis to the data acquisition and analysis procedures. The theory of the resonance between the directly emitted photoelectron of a selected valence band and the electron emitted by autoionization (Auger) of the same valence band is presented within a formal frame. The critical issue of the angular symmetry and distribution of the resonating electron is discussed in connection with the current computational protocols for photoelectron diffraction, PED, analysis. A few representative applications are presented, where RESPED is shown to overcome some limitations of conventional PED thanks to …

DiffractionMaterials scienceValence (chemistry)AutoionizationPhysics::Atomic and Molecular ClustersValence bandEndohedral fullereneElectronAtomic physicsVolume concentrationAuger
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High-resolution triple-resonance autoionization of uranium isotopes

2005

Abstract The near-threshold autoionization (AI) spectrum of uranium has been investigated by triple-resonance excitation with single-mode continuous lasers. Spectra were recorded over the first ∼30 cm − 1 above the first ionization limit at a resolution of 3 × 10 − 4 cm − 1 using intermediate states with different J values (6, 7, 8) to assign AI level total angular momentum J AI  = 5 to 9. Resonances with widths ranging from 8 MHz to 30 GHz were observed; the strongest ones have J AI  = 9 and widths of ∼60 MHz. Hyperfine structures for 235 U and isotope shifts for 234, 235 U have been measured in the two intermediate levels and in the final AI level for the most favorable excitation path. T…

IsotopeIsotopes of uraniumChemistryAnalytical chemistryResonancechemistry.chemical_elementUraniumAtomic and Molecular Physics and OpticsSpectral lineAnalytical ChemistryAutoionizationIonizationAtomic physicsInstrumentationHyperfine structureSpectroscopySpectrochimica Acta Part B: Atomic Spectroscopy
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Resonant ionization spectroscopy of autoionizing Rydberg states in cobalt and redetermination of its ionization potential

2017

Multi-step resonance ionization spectroscopy of cobalt has been performed using a hot-cavity laser ion source and three Ti:Sapphire lasers. The photoionization spectra revealed members of five new autoionizing Rydberg series that originate from three different lower levels of 3d74s5s h4F9/2, 3d74s4d f4G11/2, and 3d74s4d f4H13/2 and converge to the first four excited states of singly ionized Co. The analyses of the Rydberg series yield 63564.689 �� 0.036 cm-1 as the first ionization potential of Co, which is an order of magnitude more accurate than the previous estimation. Using a three-step resonance ionization scheme that employs an autoinizing Rydberg state in the last transition, we obta…

Physics010308 nuclear & particles physicsPhotoionizationMolar ionization energies of the elementsCondensed Matter Physics01 natural sciencesAtomic and Molecular Physics and OpticsIon sourcesymbols.namesakeAutoionizationExcited stateIonization0103 physical sciencesPhysics::Atomic and Molecular ClustersRydberg formulasymbolsPhysics::Atomic PhysicsAtomic physicsRydberg state010306 general physicsJournal of Physics B: Atomic, Molecular and Optical Physics
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Efficient three-step, two-color ionization of plutonium using a resonance enhanced 2-photon transition into an autoionizing state

2004

Resonance ionization mass spectrometry (RIMS) has proven to be a powerful method for isotope selective ultra-trace analysis of long-lived radioisotopes. For plutonium detection limits of $\rm 10^{6}$ to $\rm 10^{7}$ atoms have been achieved for various types of samples. So far a three-step, three-color laser excitation scheme was applied for efficient ionization. In this work, a two-photon transition from an excited state into a high-lying autoionizing state, will be presented, yielding a similar overall efficiency as the three-step, three-color ionization scheme. In this way, only two tunable lasers are needed, while the advantages of a three-step, three-color excitation (high selectivity,…

PhysicsAutoionizationExcited stateIonizationOptical physicsPhysics::Atomic PhysicsPhotoionizationAtomic physicsMass spectrometryResonance (particle physics)Atomic and Molecular Physics and OpticsExcitationThe European Physical Journal D - Atomic, Molecular and Optical Physics
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Temporal phase control of bound-bound and bound-free two-photon transitions in NO with two time-delayed cross-polarized pulses

2001

0953-4075; Temporal phase control over the multi-photoionization of NO is investigated experimentally The coherent excitation of the molecular system is achieved by a sequence of two phase-related non-Fourier-transform-limited laser pulses delivered by a nanosecond dye laser, The phase-locked pulses are produced by making use of an actively stabilized interferometer with a tunable pathlength difference. As the coherence time of the laser is comparable with the inhomogenous dephasing time of the medium, the measurements are performed with temporally overlapped pulses. In order to avoid the modulation of the ionic signal coming from optical interference, the linear polarizations of the two pu…

PhysicsINTERFERENCECoherence timeDye laserNITRIC-OXIDESPECTROSCOPYbusiness.industryDephasingNanosecondCondensed Matter PhysicsLaserAtomic and Molecular Physics and Opticslaw.inventionMOLECULESOpticslawExcited stateIonizationAUTOIONIZATIONAtomic physicsCOHERENT CONTROLFIELDbusiness2-PHOTON TRANSITIONSExcitation
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Observation of field phase dependent autoionization

1999

We report on the observation of a field phase dependent autoionization rate of calcium in the region of the doubly excited state. Excitation of the autoionizing state occurs from the atomic ground state through two phase related and hence interfering channels, namely a three photon channel and a single photon channel , being the third harmonic of . The autoionization rate exhibits a sinusoidal modulation as a function of the relative phase of the two excitation fields. Both ionizing fields are not focused in the interaction region, thus demonstrating the possibility of phase control in a large interaction volume and free of phase shift effects associated with focused geometries.

PhysicsPhotonField (physics)Phase (waves)Condensed Matter PhysicsInteraction volumeAtomic and Molecular Physics and OpticsAutoionizationExcited statePhysics::Atomic and Molecular ClustersPhysics::Atomic PhysicsAtomic physicsGround stateExcitationJournal of Physics B: Atomic, Molecular and Optical Physics
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Tracking Autoionizing-Wave-Packet Dynamics at the 1-fs Temporal Scale

2010

We present time-resolved studies and Fourier transform spectroscopy of inner-shell excited states undergoing Auger decay and doubly excited autoionizing states, utilizing coherent extreme-ultraviolet (XUV) radiation continua. Series of states spanning a range of ∼4  eV are excited simultaneously. An XUV probe pulse tracks the oscillatory and decaying evolution of the formed wave packet. The Fourier transform of the measured trace reproduces the spectrum of the series. The present work paves the way for ultrabroadband XUV spectroscopy and studies of ultrafast dynamics in all states of matter.

PhysicsWave packetGeneral Physics and Astronomy01 natural sciences7. Clean energyFourier transform spectroscopy010309 opticssymbols.namesakeFourier transformAutoionizationExcited state0103 physical sciencesPhysics::Atomic and Molecular ClusterssymbolsState of matterAtomic physics010306 general physicsSpectroscopyUltrashort pulsePhysical Review Letters
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