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We sum up the next-to-leading logarithmic corrections to the heavy-quarkonium hyperfine splitting using the nonrelativistic renormalization group. On the basis of this result, we predict the mass of the $\eta_b$ meson to be $M(\eta_b)=9419…

High Energy Physics - Phenomenology · Physics 2010-05-25 B. A. Kniehl , A. A. Penin , A. Pineda , V. A. Smirnov , M. Steinhauser

Measurements of neutrino oscillations using the disappearance of muon neutrinos from the Fermilab NuMI neutrino beam as observed by the two MINOS detectors are reported. New analysis methods have been applied to an enlarged data sample from…

High Energy Physics - Experiment · Physics 2011-05-09 The MINOS Collaboration , P. Adamson , C. Andreopoulos , R. Armstrong , D. J. Auty , D. S. Ayres , C. Backhouse , G. Barr , M. Bishai , A. Blake , G. J. Bock , D. J. Boehnlein , D. Bogert , S. Cavanaugh , D. Cherdack , S. Childress , B. C. Choudhary , J. A. B. Coelho , S. J. Coleman , L. Corwin , D. Cronin-Hennessy , I. Z. Danko , J. K. de Jong , N. E. Devenish , M. V. Diwan , M. Dorman , C. O. Escobar , J. J. Evans , E. Falk , G. J. Feldman , M. V. Frohne , H. R. Gallagher , R. A. Gomes , M. C. Goodman , P. Gouffon , N. Graf , R. Gran , N. Grant , K. Grzelak , A. Habig , D. Harris , J. Hartnell , R. Hatcher , A. Himmel , A. Holin , X. Huang , J. Hylen , J. Ilic , G. M. Irwin , Z. Isvan , D. E. Jaffe , C. James , D. Jensen , T. Kafka , S. M. S. Kasahara , G. Koizumi , S. Kopp , M. Kordosky , A. Kreymer , K. Lang , G. Lefeuvre , J. Ling , P. J. Litchfield , R. P. Litchfield , L. Loiacono , P. Lucas , W. A. Mann , M. L. Marshak , N. Mayer , A. M. McGowan , R. Mehdiyev , J. R. Meier , M. D. Messier , D. G. Michael , W. H. Miller , S. R. Mishra , J. Mitchell , C. D. Moore , J. Morfín , L. Mualem , S. Mufson , J. Musser , D. Naples , J. K. Nelson , H. B. Newman , R. J. Nichol , J. A. Nowak , W. P. Oliver , M. Orchanian , R. Ospanov , J. Paley , R. B. Patterson , G. Pawloski , G. F. Pearce , D. A. Petyt , S. Phan-Budd , R. K. Plunkett , X. Qiu , J. Ratchford , T. M. Raufer , B. Rebel , P. A. Rodrigues , C. Rosenfeld , H. A. Rubin , M. C. Sanchez , J. Schneps , P. Schreiner , P. Shanahan , C. Smith , A. Sousa , P. Stamoulis , M. Strait , N. Tagg , R. L. Talaga , J. Thomas , M. A. Thomson , G. Tinti , R. Toner , G. Tzanakos , J. Urheim , P. Vahle , B. Viren , A. Weber , R. C. Webb , C. White , L. Whitehead , S. G. Wojcicki , T. Yang , R. Zwaska

The hyperfine spin splittings in heavy quarkonia are studied using the recently developed renormalization group improved spin-spin potential which is independent of the scale parameter $\mu$. The calculated energy difference between the…

High Energy Physics - Phenomenology · Physics 2014-11-17 Yu-Qi Chen , Robert J. Oakes

Positronium is an ideal system for the research of QED in the bound state. The hyperfine splitting of positronium (Ps-HFS: about 203 GHz) is a good tool to test QED and also sensitive to new physics beyond the Standard Model. Previous…

Instrumentation and Detectors · Physics 2010-12-01 Akira Miyazaki

Positronium is an ideal system for the research of the quantum electrodynamics (QED) in bound state. The hyperfine splitting (HFS) of positronium, $\Delta_{\mathrm{HFS}}$, gives a good test of the bound state calculations and probes new…

Atomic Physics · Physics 2015-05-28 A. Ishida , Y. Sasaki , G. Akimoto , T. Suehara , T. Namba , S. Asai , T. Kobayashi , H. Saito , M. Yoshida , K. Tanaka , A. Yamamoto

We compute the chiral corrections to the hyperfine splittings $\Delta_D=(m_{D^*_s}-m_{D_s})-(m_{D^{*+}}-m_{D^+})$ and $\Delta_B=(m_{B^*_s}-m_{B_s})-(m_{B^{*0}}-m_{B^0})$ arising from one-loop chiral corrections, working in a framework of an…

High Energy Physics - Phenomenology · Physics 2007-05-23 Nicola Di Bartolomeo

Applying Discretized Light Cone Quantization, we perform the first calculation of the spectrum of true muonium, the $\mu^+ \mu^-$ atom, as modified by the inclusion of an $|e\bar e >$ Fock component. The shift in the mass eigenvalue is…

High Energy Physics - Phenomenology · Physics 2014-11-13 Henry Lamm , Richard F. Lebed

The ongoing experimental efforts to measure the hyperfine transition in muonic hydrogen prompt an accurate evaluation of the proton-structure effects. At the leading order in $\alpha$, which is $O(\alpha^5)$ in the hyperfine splitting…

Nuclear Theory · Physics 2024-02-01 Franziska Hagelstein , Vadim Lensky , Vladimir Pascalutsa

We report a microwave spectroscopy measurement of the muonium $2S_{1/2}-2P_{3/2}$ fine structure transition, yielding a transition frequency of $9871.0 \pm 7.0~\mathrm{MHz}$, in agreement with state-of-the-art QED predictions within one…

We compute the hyperfine splitting $m_{J/\psi}-m_{\eta_c}$ on the lattice, using both the Wilson and $O(a)$-improved (clover) actions for quenched quarks. The computations are performed on a $24^3\times48$ lattice at $\beta = 6.2$, using…

We determine the sensitivity to a possible variation of the proton-to-electron mass ratio \mu for torsion-wagging-rotation transitions in the ground state of methylamine (CH3NH2). Our calculation uses an effective Hamiltonian based on a…

Recent and ongoing experimental work on the positronium spectrum motivates new efforts to calculate positronium energy levels at the level of three loop corrections. We have obtained results for one set of such corrections involving…

High Energy Physics - Phenomenology · Physics 2014-10-08 Gregory S. Adkins , Christian Parsons , M. D. Salinger , Ruihan Wang , Richard N. Fell

The muon and tauon light-by-light scattering contributions to hyperfine splitting in muonium are calculated. These results conclude calculation of all hard three-loop contributions to hyperfine splitting containing graphs with closed…

High Energy Physics - Phenomenology · Physics 2014-12-10 Michael I. Eides , Valery A. Shelyuto

A method for computing electromagnetic properties of hadrons in lattice QCD is described. The electromagnetic field is introduced dynamically, using a noncompact formulation. Employing enhanced electric charges, the dependence of the…

High Energy Physics - Lattice · Physics 2009-10-28 A. Duncan , E. Eichten , H. Thacker

We obtain positronium Hyperfine Splitting owing to the non-commutativity of space and show that, in the leading order, it is proportional to $\theta \alpha^6$ where, $\theta$ is the parameter of non-commutativity. It is also shown that…

High Energy Physics - Phenomenology · Physics 2009-11-07 M. Haghighat , S. M. Zebarjad , F. Loran

The hyperfine (hf) transition rates for muonic atoms have been re-measured for select light nuclei, using neutron detectors to evaluate the time dependence of muon capture. For $^{19}$F $\Lambda$$_{h}$ = 5.6 (2) $\mu$s$^{-1}$ for the hf…

Nuclear Experiment · Physics 2009-11-07 T. J. Stocki , D. F. Measday , E. Gete , M. A. Saliba , J. Lange , T. P. Gorringe

The $SU(3)$ and hyperfine mass splittings of mesons containing a single heavy quark are computed to one-loop order in chiral perturbation theory with heavy quark spin symmetry. Electromagnetic contributions of order $\alpha_em$ are…

High Energy Physics - Phenomenology · Physics 2008-11-26 Elizabeth Jenkins

We consider the influence of variation in the fine structure constant alpha on a promising experiment proposed by DeMille et al. to search for variation in the electron-to-proton mass ratio mu using diatomic molecules [DeMille et al., Phys.…

Atomic Physics · Physics 2011-11-15 K. Beloy , A. Borschevsky , V. V. Flambaum , P. Schwerdtfeger

We calculate the $m_d-m_u$ contribution to the mass splittings in baryonic isospin multiplets using SU(3) chiral perturbation theory and lattice QCD. Fitting isospin-averaged perturbation theory functions to PACS-CS and QCDSF-UKQCD…

Nuclear Theory · Physics 2015-06-11 P. E. Shanahan , A. W. Thomas , R. D. Young

The contribution of hadronic vacuum polarization (HVP) to the hyperfine splitting of the muonium ground state is evaluated with the account of modern experimental data on the cross section of $e^+e^- \to$ annihilation into hadrons.

High Energy Physics - Phenomenology · Physics 2011-04-15 R. N. Faustov , A. Karimkhodzhaev , A. P. Martynenko
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