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Various fundamental-physics experiments such as measurement of the birefringence of the vacuum, searches for ultralight dark matter (e.g., axions), and precision spectroscopy of complex systems (including exotic atoms containing antimatter constituents) are enabled by high-field magnets.
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T. A. Miller, · 1979
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Detection rates for “invisible”-axion searches,
P. Sikivie, · 1985
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Enhancement of P- and T-nonconserving effects in rare-earth atoms,
V. A. Dzuba, V. V. Flambaum, I. B. Khriplovich, · 1986
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The quantized Hall effect,
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Proposed experiment to produce and detect light pseudoscalars,
K. Van Bibber, N. R. Dagdeviren, S. E. Koonin, A. K. Kerman, H. N. Nelson, · 1987
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A new detector scheme for axions,
K. Zioutas, Y. Semertzidis, · 1988
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D. M. Lazarus, et al., · 1992
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Variation in polarization of high-energy gamma quanta traversing a bunch of polarized laser photons,
G. L. Kotkin, V. G. Serbo, · 1997
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Search for parity nonconservation in atomic dysprosium,
A. T. Nguyen, D. Budker, D. DeMille, M. Zolotorev, · 1997
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Direct search for solar axions by using strong magnetic field and X-ray detectors,
S. Moriyama, et al., · 1998
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H. Schneider-Muntau (Ed.), Megagauss Magnetic Field Generation, its application to science and ultra-high pulsed power technology. Proc. VIIIth International conference on Megagauss Magnetic field Generation and Related Topics, Tallahassee, FL., Singapore: World Scientific, 1998
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A decommissioned LHC model magnet as an axion telescope,
K. Zioutas, et al., · 1999
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Megagauss magnetic field generation in single-turn coils: new frontiers for scientific experiments,
O. Portugall, N. Puhlmann, H. U. Müller, M. Barczewski, I. Stolpe, M. von Ortenberg, · 1999
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Probing the quantum vacuum. Perturbative effective action approach in quantum electrodynamics and its application,
W. Dittrich, H. Gies, · 2000
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Unusually large polarizabilities and previously unidentified atomic states in ba,
C.-H. Li, S. M. Rochester, M. G. Kozlov, D. Budker, · 2004
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Feasibility study of an experiment to measure the vacuum magnetic birefringence,
P. Pugnat, M. Král, A. Siemko, L. Duvillaret, M. Finger, J. Zicha, · 2005
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First results from the CERN Axion Solar Telescope (CAST),
K. Zioutas, et al. (CAST), · 2005
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On the observation of vacuum birefringence,
T. Heinzl, B. Liesfeld, K.-U. Amthor, H. Schwoerer, R. Sauerbrey, A. Wipf, · 2006
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Light diffraction by a strong standing electromagnetic wave,
A. Di Piazza, K. Z. Hatsagortsyan, C. H. Keitel, · 2006
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Rare-earth elements in the atmosphere of the magnetic chemically peculiar star HD 144897 - new classification of the Nd III spectrum,
Ryabchikova, T., Ryabtsev, A., Kochukhov, O., Bagnulo, S., · 2006
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No light shining through a wall,
C. Robilliard, R. Battesti, M. Fouche, J. Mauchain, A.-M. Sautivet, F. Amiranoff, C. Rizzo, · 2007
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Molecular fingerprinting with the resolved modes of a femtosecond laser frequency comb,
S. A. Diddams, L. Hollberg, V. Mbele, · 2007
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New pvlas results and limits on magnetically induced optical rotation and ellipticity in vacuum,
E. Zavattini, G. Zavattini, G. Ruoso, G. Raiteri, E. Polacco, E. Milotti, V. Lozza, M. Karuza, U. Gastaldi, G. Di Domenico, F. Della Valle, R. Cimino, S. Carusotto, G. Cantatore, M. Bregant (PVLAS Collaboration)), · 2008
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A Transportable Pulsed Magnet System for Fundamental Investigations in Quantum Electrodynamics and Particle Physics,
S. Batut, J. Mauchain, R. Battesti, et al., · 2008
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Search for axion-like particles using a variable baseline photon regeneration technique,
A. S. Chou, W. C. Wester, III, A. Baumbaugh, H. R. Gustafson, Y. Irizarry-Valle, P. O. Mazur, J. H. Steffen, R. Tomlin, X. Yang, J. Yoo (GammeV (T-969)), · 2008
Earlier work this paper cites.
Search for solar axions with mass around 1 eV using coherent conversion of axions into photons,
Y. Inoue, et al., · 2008
Earlier work this paper cites.
Discovery of 17 new sharp-lined Ap stars with magnetically resolved lines,
L. M. Freyhammer, V. G. Elkin, D. W. Kurtz, G. Mathys, P. Martinez, · 2008
Earlier work this paper cites.
N. Miura, Physics of semiconductors in high magnetic fields, volume 15, Oxford University Press, 2008
2008
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Interferometry of light propagation in pulsed fields,
B. Dobrich, H. Gies, · 2009
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Probing for new physics and detecting non-linear vacuum qed effects using gravitational wave interferometer antennas,
G. Zavattini, E. Calloni, · 2009
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Quantum Vacuum Experiments Using High Intensity Lasers,
M. Marklund, J. Lundin, · 2009
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New Strong-Field QED Effects at ELI: Nonperturbative Vacuum Pair Production,
G. V. Dunne, · 2009
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Exploring high-intensity QED at ELI,
T. Heinzl, A. Ilderton, · 2009
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Probing eV-scale axions with CAST,
E. Arik, et al. (CAST), · 2009
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Relativistic cyclotron radiation detection of tritium decay electrons as a new technique for measuring the neutrino mass,
B. Monreal, J. A. Formaggio, · 2009
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New ALPS Results on Hidden-Sector Lightweights,
K. Ehret, et al., · 2010
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A Photon Regeneration Experiment for Axionlike Particle Search using X-rays,
R. Battesti, M. Fouche, C. Detlefs, T. Roth, P. Berceau, F. Duc, P. Frings, G. L. J. A. Rikken, C. Rizzo, · 2010
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Exponential increase of energy level density in atoms: Th and Th II,
V. A. Dzuba, V. V. Flambaum, · 2010
Cited alongside, same era.
Atlas superconducting toroids—the largest ever built,
H. H. Ten Kate, · 2010
Cited alongside, same era.
Determination of high-purity polarization state of X-rays,
B. Marx, I. Uschmann, S. Höfer, R. Lötzsch, O. Wehrhan, E. Förster, M. Kaluza, T. Stöhlker, H. Gies, C. Detlefs, T. Roth, J. Härtwig, G. G. Paulus, · 2011
Cited alongside, same era.
Light shining through walls,
J. Redondo, A. Ringwald, · 2011
Cited alongside, same era.
Search for sub-eV mass solar axions by the cern axion solar telescope with He 3 {}^{3}\mathrm{He} buffer gas,
E. Arik, et al. (CAST), · 2011
Cited alongside, same era.
Towards a new generation axion helioscope,
I. G. Irastorza, F. Avignone, S. Caspi, J. Carmona, T. Dafni, et al., · 2011
Detecting vacuum birefringence with x-ray free electron lasers and high-power optical lasers: a feasibility study,
H.-P. Hans-Peter Schlenvoigt, T. Heinzl, U. Schramm, T. E. Cowan, R. Sauerbrey, · 2016
Later among the works it cites.
Probing vacuum birefringence using x-ray free electron and optical high-intensity lasers,
F. Karbstein, C. Sundqvist, · 2016
Later among the works it cites.
Prospects for studying vacuum polarisation using dipole and synchrotron radiation,
A. Ilderton, M. Marklund, · 2016
Later among the works it cites.
Vacuum birefringence in high-energy laser-electron collisions,
B. King, N. Elkina, · 2016
Later among the works it cites.
Measuring vacuum polarization with high-power lasers,
B. King, T. Heinzl, · 2016
Later among the works it cites.
Gaseous time projection chambers for rare event detection: Results from the T-REX project. II. Dark matter,
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Cited alongside, same era.
Gaia spectroscopy overview and comparative spectrum modeling for cool giants,
U. Heiter, T. Lebzelter, · 2011
Cited alongside, same era.
Frequency comb velocity-modulation spectroscopy,
L. C. Sinclair, K. C. Cossel, T. Coffey, J. Ye, E. A. Cornell, · 2011
Cited alongside, same era.
A copper-lined magnet coil with maximum field of 700 T for electromagnetic flux compression,
S. Takeyama, E. Kojima, · 2011
Cited alongside, same era.
Extremely high-intensity laser interactions with fundamental quantum systems,
A. Di Piazza, C. Müller, K. Hatsagortsyan, C. Keitel, · 2012
Cited alongside, same era.
Extremely high-intensity laser interactions with fundamental quantum systems,
A. Di Piazza, C. Muller, K. Z. Hatsagortsyan, C. H. Keitel, · 2012
Cited alongside, same era.
Wispy cold dark matter,
P. Arias, D. Cadamuro, M. Goodsell, J. Jaeckel, J. Redondo, A. Ringwald, · 2012
Cited alongside, same era.
I. G. Irastorza, et al., · 2016
Later among the works it cites.
Broadband and resonant approaches to axion dark matter detection,
Y. Kahn, B. R. Safdi, J. Thaler, · 2016
Later among the works it cites.
A. Kramida, Y. Ralchenko, J. Reader, NIST ASD Team, NIST atomic spectra database (version 5.4), 2016. URL: http://physics.nist.gov/asd
2016
Later among the works it cites.
N. A. Leefer, A. Viatkina, M. G. Kozlov, D. Budker, Spectroscopy of complex systems revisited (unpublished), 2016
2016
Later among the works it cites.
A. V. Viatkina, Influence of Magnetic Field on Statistical Properties of Dense Atomic Spectra, Master’s thesis, Saint-Petersburg State University, 2016
2016
Later among the works it cites.
2016a. URL: https://nationalmaglab.org/images/magnet_development/asc/searchable_docs/asc_resources/coated_conductors/2016/io_06_kim.pdf
Webpage, · 2016
Later among the works it cites.
Progress in the development of the HFML 45 T hybrid magnet,
A. den Ouden, C. A. Wulffers, N. E. Hussey, G. Laureijs, F. J. P. Wijnen, G. F. A. J. Wulterkens, M. D. Bird, I. R. Dixon, J. A. A. J. Perenboom, · 2016
Later among the works it cites.
Field-induced spin-density wave beyond hidden order in URu 2 Si 2 ,
W. Knafo, F. Duc, F. Bourdarot, K. Kuwahara, H. Nojiri, D. Aoki, J. Billette, P. Frings, X. Tonon, E. Lelièvre-Berna, J. Flouquet, L. P. Regnault, · 2016
Later among the works it cites.
Photon-photon scattering and related phenomena. Experimental and theoretical approaches: The early period (2017)
K. Scharnhorst, · 2017
Later among the works it cites.
An Addendum to the Heisenberg-Euler effective action beyond one loop,
H. Gies, F. Karbstein, · 2017
Later among the works it cites.
Evidence for vacuum birefringence from the first optical-polarimetry measurement of the isolated neutron star RX J1856.5−3754,
R. P. Mignani, V. Testa, D. G. Caniulef, R. Taverna, R. Turolla, S. Zane, K. Wu, · 2017
Later among the works it cites.
A note on polarized light from Magnetars,
L. M. Capparelli, A. Damiano, L. Maiani, A. D. Polosa, · 2017
Later among the works it cites.
A. Ejlli, PROGRESS TOWARDS A FIRST MEASUREMENT OF THE MAGNETIC BIREFRINGENCE OF VACUUM WITH A POLARIMETER BASED ON A FABRY-PEROT CAVITY, Ph.D. thesis, Dipartimento di Fisica e Scienze della Terra Università di Ferrara, Via Saragat 1, Blocco C 44122, Ferrara, Italy, 2017
2017
Later among the works it cites.
The oval experiment: a new experiment to measure vacuum magnetic birefringence using high repetition pulsed magnets,
X. Fan, S. Kamioka, T. Inada, T. Yamazaki, T. Namba, S. Asai, J. Omachi, K. Yoshioka, M. Kuwata-Gonokami, A. Matsuo, K. Kawaguchi, K. Kindo, H. Nojiri, · 2017
Later among the works it cites.
Noise characterization for resonantly enhanced polarimetric vacuum magnetic-birefringence experiments,
M. T. Hartman, A. Rivère, R. Battesti, C. Rizzo, · 2017
Later among the works it cites.
Erratum to: A polarisation modulation scheme for measuring vacuum magnetic birefringence with static fields,
G. Zavattini, F. Della Valle, A. Ejlli, G. Ruoso, · 2017
Later among the works it cites.
Probing vacuum birefringence under a high-intensity laser field with gamma-ray polarimetry at the GeV scale,
Y. Nakamiya, K. Homma, T. Moritaka, K. Seto, · 2017
Later among the works it cites.
High-Energy Vacuum Birefringence and Dichroism in an Ultrastrong Laser Field,
S. Bragin, S. Meuren, C. H. Keitel, A. Di Piazza, · 2017
Later among the works it cites.
F. Karbstein, · 2017
Later among the works it cites.
Probing Physics in Vacuum Using an X-ray Free-Electron Laser, a High-Power Laser, and a High-Field Magnet,
T. Inada, T. Yamazaki, T. Yamaji, Y. Seino, X. Fan, S. Kamioka, T. Namba, S. Asai, · 2017
Later among the works it cites.
Search for Two-Photon Interaction with Axionlike Particles Using High-Repetition Pulsed Magnets and Synchrotron X Rays,
T. Inada, et al., · 2017
Later among the works it cites.
New cast limit on the axion-photon interaction,
CAST Collaboration, · 2017
Later among the works it cites.
I. G. Irastorza, Talk at the Physics Beyond Colliders working group meeting at CERN, 2017
2017
Later among the works it cites.
Design and operational experience of a microwave cavity axion detector for the 20–100 μ \mu eV range,
S. A. Kenany, M. Anil, K. Backes, B. Brubaker, S. Cahn, G. Carosi, Y. Gurevich, W. Kindel, S. Lamoreaux, K. Lehnert, S. Lewis, M. Malnou, D. Palken, N. Rapidis, J. Root, M. Simanovskaia, T. Shokair, I. Urdinaran, K. van Bibber, L. Zhong, · 2017
Later among the works it cites.
First results from a microwave cavity axion search at 24 μ eV 24\text{ }\text{ }\mu\mathrm{eV} ,
B. M. Brubaker, L. Zhong, Y. V. Gurevich, S. B. Cahn, S. K. Lamoreaux, M. Simanovskaia, J. R. Root, S. M. Lewis, S. Al Kenany, K. M. Backes, I. Urdinaran, N. M. Rapidis, T. M. Shokair, K. A. van Bibber, D. A. Palken, M. Malnou, W. F. Kindel, M. A. Anil, K. W. Lehnert, G. Carosi, · 2017
Later among the works it cites.
Laboratory searches for qcd axion dark matter,
G. Rybka, · 2017
Later among the works it cites.
The organ experiment: An axion haloscope above 15 ghz,
B. T. McAllister, G. Flower, E. N. Ivanov, M. Goryachev, J. Bourhill, M. E. Tobar, · 2017
Later among the works it cites.
Haloscope searches for dark matter axions at the center for axion and precision physics research,
Petrakou, Eleni for CAPP/IBS, · 2017
Later among the works it cites.
Preliminary study for a new axion dark-matter haloscope,
P. Pugnat, R. Ballou, P. Camus, F. Caspers, B. R. Ko, N. Roch, Y. K. Semertzidis, · 2017
Later among the works it cites.
First axion dark matter search with toroidal geometry,
J. Choi, H. Themann, M. J. Lee, B. R. Ko, Y. K. Semertzidis, · 2017
Later among the works it cites.
Searching for galactic axions through magnetized media: The QUAX proposal,
R. Barbieri, C. Braggio, G. Carugno, C. Gallo, A. Lombardi, A. Ortolan, R. Pengo, G. Ruoso, C. Speake, · 2017
Later among the works it cites.
Determining the neutrino mass with cyclotron radiation emission spectroscopy - project 8,
A. A. Esfahani, D. Asner, S. Böser, R. Cervantes, C. Claessens, P. Doe, S. Doeleman, J. Fernandez, M. Fertl, E. Finn, J. Formaggio, D. Furse, M. Guigue, K. Heeger, A. M. Jones, K. Kazkaz, J. Kofron, C. Lamb, B. LaRoque, E. Machado, E. McBride, M. Miller, B. Monreal, P. Mohanmurthy, J. Nikkel, N. Oblath, W. Pettus, H. Robertson, L. Rosenberg, G. Rybka, D. Rysewyk, L. Saldaña, P. Slocum, M. Sternberg, J. Tedeschi, T. Thuemmler, B. VanDevender, L. Vertatschitsch, L. de Viveiros, M. Wachtendonk, J. Weintroub, N. Woods, A. Young, E. Zayas, · 2017
Later among the works it cites.
Search for new physics with atoms and molecules,
M. S. Safronova, D. Budker, D. DeMille, D. F. J. Kimball, A. Derevianko, C. W. Clark, · 2017
Later among the works it cites.
Prediction of quantum many-body chaos in the protactinium atom,
A. V. Viatkina, M. G. Kozlov, V. V. Flambaum, · 2017
Later among the works it cites.
Magnetoresistance in copper at high frequency and high magnetic fields,
S. Ahn, S. Youn, J. Yoo, D. Kim, J. Jeong, M. Ahn, J. Kim, D. Lee, J. Lee, T. Seong, Y. Semertzidis, · 2017
Later among the works it cites.
NMR spectroscopy up to 35.2 T using a series-connected hybrid magnet,
Z. Gan, I. Hung, X. Wang, J. Paulino, G. Wu, I. M. Litvak, P. L. Gor’kov, W. W. Brey, P. Lendi, J. L. Schiano, M. D. Bird, I. R. Dixon, J. Toth, G. S. Boebinger, T. A. Cross, · 2017
Later among the works it cites.
The 36-T series-connected hybrid magnet system design and integration,
I. R. Dixon, S. T. Bole, K. R. Cantrell, S. T. Hannahs, J. G. Kynoch, W. S. Marshall, A. A. Powell, J. Toth, M. D. Bird, · 2017
Later among the works it cites.
Pulsed high magnetic field measurement with a rubidium vapor sensor,
S. George, N. Bruyant, J. Béard, S. Scotto, E. Arimondo, R. Battesti, D. Ciampini, C. Rizzo, · 2017
Later among the works it cites.
Optical spectroscopy of a microsized Rb vapor sample in magnetic fields up to 58 T,
D. Ciampini, R. Battesti, C. Rizzo, E. Arimondo, · 2017
Later among the works it cites.
Oscillating spin-2 dark matter,
L. Marzola, M. Raidal, F. R. Urban, · 2018
Closest in time.
The cosmic axion spin precession experiment (CASPEr): a dark-matter search with nuclear magnetic resonance,
A. Garcon, D. Aybas, J. W. Blanchard, G. Centers, N. L. Figueroa, P. W. Graham, D. F. J. Kimball, S. Rajendran, M. G. Sendra, A. O. Sushkov, L. Trahms, T. Wang, A. Wickenbrock, T. Wu, D. Budker, · 2018
Closest in time.
F. Ficek, P. Fadeev, V. V. Flambaum, D. F. J. Kimball, M. G. Kozlov, Y. V. Stadnik, D. Budker, · 2018
Closest in time.
2018. URL: http://www.superpower-inc.com/content/2g-hts-wire
Webpage, · 2018
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2018. URL: https://nationalmaglab.org/news-events/news/national-maglab-racks-up-another-record
Webpage, · 2018
Closest in time.
Progress in the construction of the 43 T hybrid magnet at LNCMI-Grenoble,
P. Pugnat et al, · 2018
Closest in time.
2018. URL: http://www.toulouse.lncmi.cnrs.fr/spip.php?page=article&id_article=102&lang=en
Webpage, · 2018
Closest in time.
Note: An approach to 1000 T using the electro-magnetic flux compression,
D. Nakamura, H. Sawabe, S. Takeyama, · 2018
Closest in time.
Design and tests of the 100-T triple coil at LNCMI,
J. Béard, J. Billette, N. Ferreira, P. Frings, J. M. Lagarrigue, F. Lecouturier, J. P. Nicolin, · 2018
Closest in time.