We propose an effective field theory incorporating light SU(3)-flavor and heavy quark spin symmetry to describe charmed meson-antimeson bound states. At lowest order the effective field theory entails a remarkable simplification: it only involves contact range interactions among the heavy meson and antimeson fields. We show that the isospin violating decays of the X(3872) can be used to constrain the interaction between the D and a D̅ * mesons in the isovector channel. As a consequence, we can rule out the existence of an isovector partner of the X(3872). If we additionally assume that the X(3915) and Y(4140) are D*D̅ * and Ds*D̅ s* molecular states, we can determine the full spectrum of molecular states with isospin I=0, 1/2 and 1
We explore the consequences of heavy quark spin symmetry for the charmed meson-antimeson system in a...
In this work, we have made use of the identification of the X(3872) and Zb(10610)/Zb′(10650) as heav...
The heavy-quark spin symmetry (HQSS) partners of the X(3872) molecule are investigated in a chiral e...
We propose an effective field theory incorporating light SU(3)-flavor and heavy quark spin symmetry ...
We propose an effective field theory incorporating light SU(3)-flavor and heavy quark spin symmetry ...
We propose an effective field theory incorporating light SU(3)-flavor and heavy quark spin symmetry ...
International audienceIn this work, an Effective Field Theory (EFT) incorporating light SU(3)-flavou...
International audienceIn this work, an Effective Field Theory (EFT) incorporating light SU(3)-flavou...
International audienceIn this work, an Effective Field Theory (EFT) incorporating light SU(3)-flavou...
Abstract. In this contribution we consider the theoretical description of heavy meson-antimeson mole...
In this contribution we consider the theoretical description of heavy mesonantimeson molecules from ...
We investigate heavy quark symmetries for heavy light meson-antimeson systems in a contact-range eff...
We investigate heavy quark symmetries for heavy light meson-antimeson systems in a contact-range eff...
We proposed a unified framework to describe the interactions of the observed $T_{cc}$, $P_c$, and $P...
189 páginas. Tesis Doctoral del Departamento de Física Teórica de la Universidad de Valencia y del I...
We explore the consequences of heavy quark spin symmetry for the charmed meson-antimeson system in a...
In this work, we have made use of the identification of the X(3872) and Zb(10610)/Zb′(10650) as heav...
The heavy-quark spin symmetry (HQSS) partners of the X(3872) molecule are investigated in a chiral e...
We propose an effective field theory incorporating light SU(3)-flavor and heavy quark spin symmetry ...
We propose an effective field theory incorporating light SU(3)-flavor and heavy quark spin symmetry ...
We propose an effective field theory incorporating light SU(3)-flavor and heavy quark spin symmetry ...
International audienceIn this work, an Effective Field Theory (EFT) incorporating light SU(3)-flavou...
International audienceIn this work, an Effective Field Theory (EFT) incorporating light SU(3)-flavou...
International audienceIn this work, an Effective Field Theory (EFT) incorporating light SU(3)-flavou...
Abstract. In this contribution we consider the theoretical description of heavy meson-antimeson mole...
In this contribution we consider the theoretical description of heavy mesonantimeson molecules from ...
We investigate heavy quark symmetries for heavy light meson-antimeson systems in a contact-range eff...
We investigate heavy quark symmetries for heavy light meson-antimeson systems in a contact-range eff...
We proposed a unified framework to describe the interactions of the observed $T_{cc}$, $P_c$, and $P...
189 páginas. Tesis Doctoral del Departamento de Física Teórica de la Universidad de Valencia y del I...
We explore the consequences of heavy quark spin symmetry for the charmed meson-antimeson system in a...
In this work, we have made use of the identification of the X(3872) and Zb(10610)/Zb′(10650) as heav...
The heavy-quark spin symmetry (HQSS) partners of the X(3872) molecule are investigated in a chiral e...