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Featured researches published by N. Severijns.


Physical Review D | 2015

Revised experimental upper limit on the electric dipole moment of the neutron

J.M. Pendlebury; S. Afach; N. J. Ayres; C. A. Baker; G. Ban; Georg Bison; K. Bodek; Martin Burghoff; P. Geltenbort; K. Green; W. C. Griffith; M. G. D. van der Grinten; Zoran D. Grujić; P. Harris; V. Hélaine; P. Iaydjiev; S.N. Ivanov; M. Kasprzak; Y. Kermaidic; K. Kirch; H.-C. Koch; S. Komposch; A. Kozela; J. Krempel; B. Lauss; T. Lefort; Y. Lemière; D. J. R. May; M. Musgrave; O. Naviliat-Cuncic

We present for the first time a detailed and comprehensive analysis of the experimental results that set the current world sensitivity limit on the magnitude of the electric dipole moment (EDM) of the neutron. We have extended and enhanced our earlier analysis to include recent developments in the understanding of the effects of gravity in depolarizing ultracold neutrons; an improved calculation of the spectrum of the neutrons; and conservative estimates of other possible systematic errors, which are also shown to be consistent with more recent measurements undertaken with the apparatus. We obtain a net result of dn=−0.21±1.82×10−26  e cm, which may be interpreted as a slightly revised upper limit on the magnitude of the EDM of 3.0×10−26  e cm (90% C.L.) or 3.6×10−26  e cm (95% C.L.).


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2003

WITCH: a recoil spectrometer for weak interaction and nuclear physics studies

M. Beck; F. Ames; D. Beck; G. Bollen; B. Delauré; V. V. Golovko; V.Yu. Kozlov; I. S. Kraev; A. Lindroth; T. Phalet; W. Quint; P. Schuurmans; N. Severijns; Bart Vereecke; S. Versyck

An experimental set-up is described for the precise measurement of the recoil energy spectrum of the daughter ions from nuclear beta decay. The experiment is called WITCH, short for Weak Interaction Trap for CHarged particles, and is set up at the ISOLDE facility at CERN. The principle of the experiment and its realization are explained as well as the main physics goal. A cloud of radioactive ions stored in a Penning trap serves as the source for the WITCH experiment, leading to the minimization of scattering and energy loss of the decay products. The energy spectrum of the recoiling daughter ions from the β-decays in this ion cloud will be measured with a retardation spectrometer. The principal aim of the WITCH experiment is to study the electroweak interaction by determining the beta-neutrino angular correlation in nuclear β-decay from the shape of this recoil energy spectrum. This will be the first time that the recoil energy spectrum of the daughter ions from β-decay can be measured for a wide variety of isotopes, independent of their specific properties.


Physical Review Letters | 2009

Test of Lorentz invariance with spin precession of ultracold neutrons

I. Altarev; C.A. Baker; G. Ban; Georg Bison; K. Bodek; M. Daum; P. Fierlinger; P. Geltenbort; K. Green; M. G. D. van der Grinten; E. Gutsmiedl; P. Harris; W. Heil; R. Henneck; M. Horras; P. Iaydjiev; S.N. Ivanov; N. V. Khomutov; K. Kirch; St. Kistryn; A. Knecht; Paul E. Knowles; A. Kozela; F. Kuchler; M. Kuźniak; T. Lauer; B. Lauss; T. Lefort; A. Mtchedlishvili; O. Naviliat-Cuncic

A clock comparison experiment, analyzing the ratio of spin precession frequencies of stored ultracold neutrons and 199Hg atoms, is reported. No daily variation of this ratio could be found, from which is set an upper limit on the Lorentz invariance violating cosmic anisotropy field b perpendicular < 2 x 10(-20) eV (95% C.L.). This is the first limit for the free neutron. This result is also interpreted as a direct limit on the gravitational dipole moment of the neutron |gn| < 0.3 eV/c2 m from a spin-dependent interaction with the Sun. Analyzing the gravitational interaction with the Earth, based on previous data, yields a more stringent limit |gn| < 3 x 10(-4) eV/c2 m.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2009

Towards a new measurement of the neutron electric dipole moment

I. Altarev; G. Ban; Georg Bison; K. Bodek; Martin Burghoff; Milan Cvijovic; M. Daum; P. Fierlinger; E. Gutsmiedl; Gabriele Hampel; W. Heil; R. Henneck; M. Horras; N. V. Khomutov; K. Kirch; St. Kistryn; S. Knappe-Grüneberg; A. Knecht; Paul E. Knowles; A. Kozela; J. V. Kratz; F. Kuchler; M. Kuźniak; T. Lauer; B. Lauss; T. Lefort; A. Mtchedlishvili; O. Naviliat-Cuncic; S. Paul; A. S. Pazgalev

The effort towards a new measurement of the neutron electric dipole moment (nEDM) at the Paul Scherrer Instituts (PSI) new high intensity source of ultracold neutrons (UCN) is described. The experimental technique relies on Ramseys method of separated oscillatory fields, using UCN in vacuum with the apparatus at ambient temperature. In the first phase, R&D towards the upgrade of the RAL/Sussex/ILL apparatus is being performed at the Institut Laue-Langevin (ILL). In the second phase the apparatus, moved from ILL to PSI, will allow an improvement in experimental sensitivity by a factor of 5. In the third phase, a new spectrometer should gain another order of magnitude in sensitivity. The improvements will be mainly due to (1) much higher UCN intensity, (2) improved magnetometry and magnetic field control, and (3) a double chamber configuration with opposite electric field directions.


Physical Review Letters | 2009

Measurement of the transverse polarization of electrons emitted in free neutron decay

A. Kozela; G. Ban; A Bialek; K. Bodek; P Gorel; K. Kirch; St. Kistryn; O. Naviliat-Cuncic; N. Severijns; E. Stephan; J. Zejma

Both components of the transverse polarization of electrons (sigmaT1, sigmaT2) emitted in the beta-decay of polarized, free neutrons have been measured. The T-odd, P-odd correlation coefficient quantifying sigmaT2, perpendicular to the neutron polarization and electron momentum, was found to be R=0.008+/-0.015+/-0.005. This value is consistent with time reversal invariance and significantly improves limits on the relative strength of imaginary scalar couplings in the weak interaction. The value obtained for the correlation coefficient associated with sigmaT1, N=0.056+/-0.011+/-0.005, agrees with the Standard Model expectation, providing an important sensitivity test of the experimental setup.


Hyperfine Interactions | 1985

On-line nuclear orientation of Au isotopes at KOOL

E. van Walle; Jan Wouters; D. Vandeplassche; N. Severijns; L. Vanneste

On-line low temperature nuclear orientation measurements were performed on shortlived185Au,186Au,189mAu,191mHg implanted in an iron matrix. As decay products185IrFe and191mAuFe were studied too. Besides magnetic moment determinations spectroscopic information on spin values of excited levels and mixing ratios of transitions in the daughter nuclei Pt and Au are presented. The results are interpreted in a Nilsson + Coriolis + pairing model.


Nuclear Instruments & Methods in Physics Research Section B-beam Interactions With Materials and Atoms | 2008

The WITCH experiment: Acquiring the first recoil ion spectrum

V.Yu. Kozlov; M. Beck; S. Coeck; P. Delahaye; P. Friedag; M. Herbane; A. Herlert; I. S. Kraev; M. Tandecki; S. Van Gorp; F. Wauters; Ch. Weinheimer; F. Wenander; D. Zákoucký; N. Severijns

Abstract The standard model of the electroweak interaction describes β-decay in the well-known V–A form. Nevertheless, the most general Hamiltonian of a β-decay includes also other possible interaction types, e.g. scalar (S) and tensor (T) contributions, which are not fully ruled out yet experimentally. The WITCH experiment aims to study a possible admixture of these exotic interaction types in nuclear β-decay by a precise measurement of the shape of the recoil ion energy spectrum. The experimental set-up couples a double Penning trap system and a retardation spectrometer. The set-up is installed in ISOLDE/CERN and was recently shown to be fully operational. The current status of the experiment is presented together with the data acquired during the 2006 campaign, showing the first recoil ion energy spectrum obtained. The data taking procedure and corresponding data acquisition system are described in more detail. Several further technical improvements are briefly reviewed.


Nuclear Physics | 2001

Positron polarization in the decay of polarized N-12: a precision test of the Standard Model

E. Thomas; René Prieels; M. Allet; K. Bodek; J. Camps; Jules Deutsch; F. Gimeno-Nogues; Jan Govaerts; J. Lang; O. Naviliat-Cuncic; I. Pepe; P.A. Quin; N. Severijns; J. Sromicki

The longitudinal polarization of positrons emitted along and opposite to the nuclear spin direction has been measured in the decay of polarized N-12. The results are consistent with the Standard Model prediction. In manifest left-right symmetric models this measurement provides a lower bound of 310 GeV/c(2) at 90% CL on the mass of a possible right-handed gauge boson contributing to the electroweak interaction. In generalized versions of this model our measurement provides constraints complementary to those set by high-energy experiments


Physical Review C | 2010

Precision measurements of the

F. Wauters; V. De Leebeeck; G. Soti; E. Traykov; M. Tandecki; I. S. Kraev; V. V. Golovko; D. Zakoucky; S. Roccia; T. Phalet; N. Severijns; M. Beck; I. S. Towner; V.Yu. Kozlov; S. Van Gorp; M. Breitenfeldt

The {beta}-asymmetry parameter A-tilde for the Gamow-Teller decay of {sup 60}Co was measured by polarizing the radioactive nuclei with the brute-force low-temperature nuclear-orientation method. The {sup 60}Co activity was cooled down to milliKelvin temperatures in a {sup 3}He-{sup 4}He dilution refrigerator in an external 13-T magnetic field. The {beta} particles were observed by a 500-{mu}m-thick Si PIN diode operating at a temperature of about 10 K in a magnetic field of 0.6 T. Extensive geant4 Monte Carlo simulations were performed to gain control over the systematic effects. Our result, A-tilde=-1.014(12){sub stat}(16){sub syst}, is in agreement with the standard-model value of -0.987(9), which includes recoil-order corrections that were addressed for the first time for this isotope. Further, it enables limits to be placed on possible tensor-type charged weak currents, as well as other physics beyond the standard model.


Physics Letters B | 1996

^{60}

M. Allet; K. Bodek; J. Camps; Jules Deutsch; M. Ferro-Luzzi; F. Gimeno-Nogues; Jan Govaerts; J. Lang; R. Müller; S. Navert; O. Naviliat-Cuncic; I. Pepe; René Prieels; P.A. Quin; N. Severijns; J. Sromicki; E. Stephan; E. Thomas; J. Zejma

Abstract The polarization of positrons emitted along and opposite to the nuclear spin direction has been measured in the decay of polarized 12 N. The results are consistent with the Standard Model prediction. In manifest left-right symmetric models this measurement provides a lower limit of 220 GeV/c 2 at 90% CL on the mass of an eventual right-handed gauge boson contributing to the electroweak interaction.

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Dive into the N. Severijns's collaboration.

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L. Vanneste

Katholieke Universiteit Leuven

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P. Schuurmans

Katholieke Universiteit Leuven

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Jan Wouters

Katholieke Universiteit Leuven

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T. Phalet

Katholieke Universiteit Leuven

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I. S. Kraev

Katholieke Universiteit Leuven

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M. Beck

Katholieke Universiteit Leuven

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W Vanderpoorten

Katholieke Universiteit Leuven

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K. Bodek

Jagiellonian University

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P. De Moor

Katholieke Universiteit Leuven

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