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相关论文: Mixed Heavy Quark Hybrid Mesons, Decay Puzzles, an…

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Using the method of QCD Sum Rules, we estimate the energy of the lowest hybrid Charmonium state, and find it to be at the energy of the $\Psi'(2S)$ state, about 600 Mev above the $J/\Psi(1S)$ state. Since our solution is not consistent with…

高能物理 - 唯象学 · 物理学 2009-12-17 Leonard S. Kisslinger , Diana Parno , Seamus Riordan

We use QCD Laplace sum-rules to explore mixing between conventional mesons and hybrids in the heavy quarkonium vector $J^{PC}\!=\!1^{--}$ channel. Our cross-correlator includes perturbation theory and contributions proportional to the…

高能物理 - 唯象学 · 物理学 2018-09-03 A. Palameta , J. Ho , D. Harnett , T. G. Steele

Using the method of QCD Sum Rules we estimate the energy of lowest energy top quark meson state with a hybrid admixture. This new estimate uses the previous estimates of hybrid charmonium and upsilon states, but with the mass of the top…

综合物理 · 物理学 2020-01-22 Leonard S. Kisslinger , Debasish Das

Here we have considered $J/\Psi$ is a normal charmonium meson, while $\Psi(2S)$ is a mixed hybrid charmonium meson. Similarly $\Upsilon(1S)$ and$\Upsilon(2S)$ are normal upsilon mesons, while $\Upsilon(3S)$ is a mixed hybrid upsilon meson.…

高能物理 - 唯象学 · 物理学 2025-06-23 Leonard S. Kisslinger , Debasish Das

We estimate the relative probabilities of $\Psi'(2S)$ to $J/\Psi$ production at BNL-RHIC and $\Upsilon(nS)$ production at the LHC and Fermilab in p-p collisions, using our recent theory of mixed heavy quark hybrids, in which the $\Psi'(2S)$…

高能物理 - 唯象学 · 物理学 2015-05-30 Leonard S. Kisslinger , Ming X. Liu Patrick McGaughey

We estimate differential rapidity cross sections for $J/\Psi$ and $\Upsilon(1S)$ production via Cu-Cu and Au-Au collisions at RHIC, and the relative probabilities of $\Psi'(2S)$ to $J/\Psi$ production via p-p collisions using our recent…

高能物理 - 唯象学 · 物理学 2014-05-12 Leonard S. Kisslinger , Ming X. Liu , Patrick McGaughey

We estimate differential rapidity cross sections for $\Psi$ and $\Upsilon$ production via p-Pb collisions at 8 TeV. We use the mixed heavy quark hybrid theory in which the $J/\Psi(1S),\Upsilon(1S),\Upsilon(2S)$ are standard mesons while the…

高能物理 - 唯象学 · 物理学 2017-08-03 Leonard S. Kisslinger

We calculate the strong decays of hybrid mesons to conventional mesons for all the lowest lying J^PC hybrids of flavour uu, dd, ss, cc and bb. A decay operator developed from the heavy quark expansion of quantum chromodynamics is employed.…

高能物理 - 唯象学 · 物理学 2009-10-30 Philip R. Page

We estimate differential rapidity cross sections for $J/\Psi$, $\Psi(2S)$, $\Upsilon(1S)$, $\Upsilon(2S)$, and $\Upsilon(3S)$ production; and $\Psi(2S)$ to $J/\Psi(1S)$, $\Upsilon(3S)$ to $\Upsilon(1S)$ suppression via Xe-Xe collisions at…

高能物理 - 唯象学 · 物理学 2023-03-06 Leonard S. Kisslinger , Debasish Das

We use QCD Laplace sum-rules to study meson-hybrid mixing in vector ($1^{--}$) heavy quarkonium. We compute the QCD cross-correlator between a heavy meson current and a heavy hybrid current within the operator product expansion. In addition…

高能物理 - 唯象学 · 物理学 2018-02-07 A. Palameta , J. Ho , D. Harnett , T. G. Steele

We use QCD Laplace sum-rules to predict masses of open-flavour heavy-light hybrids where one of the hybrid's constituent quarks is a charm or bottom and the other is an up, down, or strange. We compute leading-order, diagonal correlation…

高能物理 - 唯象学 · 物理学 2018-01-18 J. Ho , D. Harnett , T. G. Steele

We explore conventional meson-hybrid mixing in $J^{PC}=1^{++}$ heavy quarkonium using QCD Laplace sum-rules. We calculate the cross-correlator between a heavy conventional meson current and heavy hybrid current within the operator product…

高能物理 - 唯象学 · 物理学 2018-10-24 A. Palameta , D. Harnett , T. G. Steele

We report on a recent QCD based research on hybrid mesons containing $c\bar c$ or $b\bar b$ quarks. We present results for the spectrum, the decay widths to heavy quarkonium, and the role of mixing with the latter. We point out that mixing…

高能物理 - 唯象学 · 物理学 2017-04-05 Rubén Oncala , Joan Soto

QCD Laplace sum rules are used to calculate heavy quarkonium (charmonium and bottomonium) hybrid masses in several distinct $J^{PC}$ channels. Previous studies of heavy quarkonium hybrids did not include the effects of dimension-six…

高能物理 - 唯象学 · 物理学 2015-04-30 R. T. Kleiv , B. Bulthuis , D. Harnett , T. Richards , Wei Chen , J. Ho , T. G. Steele , Shi-Lin Zhu

We calculate the masses and leptonic decay widths of the bottomonium $b\bar b$ and charmonium $c\bar c$ states in a constituent quark model where the Cornell-like potential and spin-dependent interaction are employed, with all model…

Masses and current couplings of the charmonium and bottomonium hybrids $ \overline{c}gc$ and $\overline{b}gb$ with spin-parities $J^{\mathrm{PC} }=0^{++},\ 0^{+-},\ 0^{-+},\ 0^{--}$ and $1^{++},\ 1^{+-},\ 1^{-+},\ 1^{--}$ are calculated…

高能物理 - 唯象学 · 物理学 2024-07-02 A. Alaakol , S. S. Agaev , K. Azizi , H. Sundu

We argue that charmonium decays into meson pairs fall into two distinct classes: one that is under control of perturbative QCD and another one that is governed by a soft mechanism. We concentrate on a systematic analysis of J/Psi (Psi')…

高能物理 - 唯象学 · 物理学 2009-08-25 Th. Feldmann , P. Kroll

The mass and current coupling of the tensor hybrid charmonia $H_{\mathrm{c}} $ and $\widetilde{H}_{\mathrm{c}}$ with quantum numbers $J^{\mathrm{PC} }=2^{-+}$ and $2^{++}$, as well as their full widths are calculated in the context of the…

高能物理 - 唯象学 · 物理学 2025-06-24 S. S. Agaev , K. Azizi , H. Sundu

In this article, we study the mass spectrum of the low-lying triply heavy hybrid baryon, which consists of three valence heavy quarks in a color octet and one valence gluon, with spin-parity $J^P=(\frac{1}{2})^+$ via QCD sum rules. This is…

高能物理 - 唯象学 · 物理学 2023-08-22 Yi-Cheng Zhao , Chun-Meng Tang , Liang Tang

The three lowest-lying $\Upsilon$ states, i.e. $\Upsilon(1S)$, $\Upsilon(2S)$, and $\Upsilon(3S)$, composed of $b\bar b$ pairs and below the $B\bar B$ threshold, provide a good platform for the researches of hadronic physics and physics…

高能物理 - 实验 · 物理学 2020-08-11 Sen Jia , Xingyu Zhou , Chengping Shen
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