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Related papers: Neutron physics in the early 1930s

200 papers

In this review we discuss the current status of research in nuclear physics which is being carried out in different centers in the World. For this purpose we supply a short account of the development in the area which evolved over the last…

Nuclear Theory · Physics 2017-03-22 C. A. Bertulani , M. S. Hussein

Even the elusive neutrinos are trapped in matter, albeit transiently, in several astrophysical circumstances. Their interactions with the ambient matter not only reveal the properties of such exotic matter itself, but also shed light on the…

Astrophysics · Physics 2009-11-06 M. Prakash , J. M. Lattimer , R. F. Sawyer , R. R. Volkas

The history of weak interactions starting with Fermi's creation of the beta decay theory and culminating in its modern avatar in the form of the electroweak gauge theory is described. Discoveries of parity violation, matter-antimatter…

History and Philosophy of Physics · Physics 2014-03-14 G. Rajasekaran

During the 1920s and 1930s, Italian physicists established strong relationships with scientists from other European countries and the United States. The career of Bruno Rossi, a leading personality in the study of cosmic rays and an Italian…

History and Philosophy of Physics · Physics 2013-06-27 Luisa Bonolis

Half a century has passed since the foundation of nuclear astrophysics. Since then, this discipline has reached its maturity. Today, nuclear astrophysics constitutes a multidisciplinary crucible of knowledge that combines the achievements…

Solar and Stellar Astrophysics · Physics 2015-05-28 Jordi Jose , Christian Iliadis

Neutron stars were first posited in the early thirties, and discovered as pulsars in late sixties; however, only recently are we beginning to understand the matter they contain. This talk describes the continuing development of a consistent…

High Energy Astrophysical Phenomena · Physics 2020-01-08 Gordon Baym

Fundamental neutron and neutrino physics at neutron sources, combining precision measurements and theory, can probe new physics at energy scales well beyond the highest energies probed by the LHC and possible future high energy collider…

Nuclear Experiment · Physics 2025-07-01 H. Abele , J. Amaral , W. R. Anthony , L. AAstrand , M. Atzori Corona , S. Baessler , M. Bartis , E. Baussan , D. H. Beck , J. Bijnens , K. Bodek , J. Bosina , E. Bossio , G. Brooijmans , L. J. Broussard , G. Brunetti , A. Burgman , M. Cadeddu , N. Cargioli , J. Cederkall , A. Chambon , T. W. Choi , P. Christiansen , V. Cianciolo , C. B. Crawford , S. Degenkolb , N. Delarosa , M. Demarteau , K. Dickerson , D. D. DiJulio , F. Dordei , Y. Efremenko , T. Ekelof , M. Eshraqi , R. R. Fan , M. Fertl , H. Filter-Pieler , B. Fornal , G. Fragneto , C. Gatto , P. Geltenbort , F. Ghazi Moradi , H. Gisbert , P. Golubev , M. Gonzalez-Alonso , G. Gorini , P. Heil , N. Hermansson-Truedsson , Y. Hicyilmaz , M. Holl , T. Ito , K. E. Iversen , T. Jenke , M. Jentschel , M. Juni Ferreira , S. Kawasaki , E. Kemp , P. Kinhult , M. Kitaguchi , J. Klenke , W. Korten , A. Kozela , B. Lauss , M. Lebert , W. Lee , T. Lesiak , C. Y. Liu , L. Lobell , A. Longhin , E. Lytken , B. Maerkisch , J. Marton , B. Meirose , N. Milas , D. Milstead , F. Monrabal , S. Moretti , P. Mueller , A. Nepomuceno , J. Newby , R. Nieuwenhuis , T. Palasz , R. Pasechnik , S. Penttila , M. Persoz , L. B. Persson , F. M. Piegsa , B. Plaster , I. Pradler , F. Pupilli , K. Pysz , T. Quirino , J. C. Ramsey , B. Rataj , J. Rathsman , S. Roccia , D. Rozpedzik , D. Rudolph , E. Salehi , V. Santoro , A. Saunders , H. Schober , K. Scholberg , W. Schreyer , A. Schubert , D. Silvermyr , O. Smirnova , W. M. Snow , T. Soldner , S. R. Soleti , Y. V. Stadnik , R. Strauss , F. Terranova , T. Tolba , N. Tsapatsaris , L. Vale Silva , W. Van Goethem , R. Wagner , M. Wolke , W. Yao , N. Yazdandoost , A. R. Young , L. Zanini , M. Zielinski

The atomic nucleus is composed of two different kinds of fermions, protons and neutrons. If the protons and neutrons did not interact, the Pauli exclusion principle would force the majority fermions (usually neutrons) to have a higher…

Nuclear Experiment · Physics 2014-12-02 O. Hen , M. Sargsian , L. B. Weinstein , E. Piasetzky , H. Hakobyan , D. W. Higinbotham , M. Braverman , W. K. Brooks , S. Gilad , K. P. Adhikari , J. Arrington , G. Asryan , H. Avakian , J. Ball , N. A. Baltzell , M. Battaglieri , A. Beck , S. May-Tal Beck , I. Bedlinskiy , W. Bertozzi , A. Biselli , V. D. Burkert , T. Cao , D. S. Carman , A. Celentano , S. Chandavar , L. Colaneri , P. L. Cole , V. Crede , A. DAngelo , R. De Vita , A. Deur , C. Djalali , D. Doughty , M. Dugger , R. Dupre , H. Egiyan , A. El Alaoui , L. El Fassi , L. Elouadrhiri , G. Fedotov , S. Fegan , T. Forest , B. Garillon , M. Garcon , N. Gevorgyan , Y. Ghandilyan , G. P. Gilfoyle , F. X. Girod , J. T. Goetz , R. W. Gothe , K. A. Griffioen , M. Guidal , L. Guo , K. Hafidi , C. Hanretty , M. Hattawy , K. Hicks , M. Holtrop , C. E. Hyde , Y. Ilieva , D. G. Ireland , B. I. Ishkanov , E. L. Isupov , H. Jiang , H. S. Jo , K. Joo , D. Keller , M. Khandaker , A. Kim , W. Kim , F. J. Klein , S. Koirala , I. Korover , S. E. Kuhn , V. Kubarovsky , P. Lenisa , W. I. Levine , K. Livingston , M. Lowry , H. Y. Lu , I. J. D. MacGregor , N. Markov , M. Mayer , B. McKinnon , T. Mineeva , V. Mokeev , A. Movsisyan , C. Munoz Camacho , B. Mustapha , P. Nadel-Turonski , S. Niccolai , G. Niculescu , I. Niculescu , M. Osipenko , L. L. Pappalardo , R. Paremuzyan , K. Park , E. Pasyuk , W. Phelps , S. Pisano , O. Pogorelko , J. W. Price , S. Procureur , Y. Prok , D. Protopopescu , A. J. R. Puckett , D. Rimal , M. Ripani , B. G. Ritchie , A. Rizzo , G. Rosner , P. Rossi , P. Roy , F. Sabatie , D. Schott , R. A. Schumacher , Y. G. Sharabian , G. D. Smith , R. Shneor , D. Sokhan , S. S. Stepanyan , S. Stepanyan , P. Stoler , S. Strauch , V. Sytnik , M. Taiuti , S. Tkachenko , M. Ungaro , A. V. Vlassov , E. Voutier , D. Watts , N. K. Walford , X. Wei , M. H. Wood , S. A. Wood , N. Zachariou , L. Zana , Z. W. Zhao , X. Zheng , I. Zonta

The consideration is presented of possible neutron experiments to search for new short-range spin-dependent forces. The spin-dependent nucleon-nucleon interaction between neutron and nuclei may cause different effects: phase shift of a…

Nuclear Experiment · Physics 2015-05-28 Yu. N. Pokotilovski

$\beta$-decay, a process that changes a neutron into a proton (and vice versa), is the dominant decay mode of atomic nuclei. This decay offers a unique window to physics beyond the standard model, and is at the heart of microphysical…

We consider the physics of neutrinos in a fireball, i.e. a tightly coupled plasma of photons, positrons and electrons. Such a fireball is believed to form in the first stages of a gamma-ray burst. We assume the fireball is…

Astrophysics · Physics 2007-05-23 Hylke B. J. Koers , Ralph A. M. J. Wijers

For a long time very little experimental information was available about neutrino properties, even though a minute neutrino mass has intriguing cosmological and astrophysical implications. This situation has changed in recent decades:…

Nuclear Theory · Physics 2017-03-29 A. B. Balantekin

The properties of nuclei embedded in an electron gas are studied within the relativistic mean-field approach. These studies are relevant for nuclear properties in astrophysical environments such as neutron-star crusts and supernova…

Nuclear Theory · Physics 2008-11-26 Thomas J. Buervenich , Igor N. Mishustin , Walter Greiner

$\alpha$-clustering study since the pioneering discovery of $^{12}$C+$^{12}$C molecular resonances half a century ago. Our knowledge on physics of nuclear molecules has increased considerably and nuclear clustering remains one of the most…

Nuclear Experiment · Physics 2017-08-23 C. Beck

The physics of neutron stars leads historically towards Landau's speculation. Even before the discovery of the neutron, he postulated the possible existence of stars more compact than white dwarfs, containing matter of the order of nuclear…

Nuclear Theory · Physics 2020-12-11 Luiz L. Lopes , Debora P. Menezes

A number of properties of dense matter can be understood semiquantitatively in terms of simple physical arguments. We begin with the outer parts of neutron stars, and consider the density at which pressure ionization occurs, the density at…

Nuclear Theory · Physics 2020-03-18 C. J. Pethick

About 40 years ago, the neutrino was ruled out as the dark matter particle based on several arguments. Here I use the well-established concept of quantum uncertainties of position and momentum to describe the decoupling of neutrinos from…

High Energy Physics - Phenomenology · Physics 2023-08-28 Roman Schnabel

During its early evolution the Universe provided a laboratory to probe fundamental physics at high energies. Relics from those early epochs, such as the light elements synthesized during primordial nucleosynthesis when the Universe was only…

Cosmology and Nongalactic Astrophysics · Physics 2019-04-22 Gary Steigman

We review our knowledge on the properties of the nuclear medium that have been studied, along many years, on the basis of many-body theory, laboratory experiments and astrophysical observations. First we consider the realm of…

Nuclear Theory · Physics 2015-05-27 M. Baldo , G. F. Burgio

How does subatomic matter organize itself? Neutron stars are cosmic laboratories uniquely poised to answer this fundamental question that lies at the heart of nuclear science. Newly commissioned rare isotope facilities, telescopes operating…

Nuclear Theory · Physics 2019-12-25 Junjie Yang , J. Piekarewicz
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