We reevaluate the Zemach, recoil and polarizability corrections to the hyperfine splitting in muonic hydrogen expressing them through the low-energy proton structure constants and obtain the precise values of the Zemach radius and two-photon exchange (TPE) contribution. The uncertainty of TPE correction to S energy levels in muonic hydrogen of 105 ppm exceeds the ppm accuracy level of the forthcoming 1S hyperfine splitting measurements at PSI, J-PARC and RIKEN-RAL
The ongoing experimental efforts to measure the hyperfine transition in muonic hydrogen prompt an ac...
The recent Lamb shift experiment at PSI and the discussions about the incompatibility of the proton ...
We constrain the possibility of a new pseudoscalar coupling between the muon and proton using a rece...
Abstract We reevaluate the Zemach, recoil and polarizability corrections to the hyperfine splitting ...
We provide an accurate evaluation of the two-photon exchange correction to the hyperfine splitting o...
Abstract We obtain a model-independent prediction for the two-photon exchange contribution to the hy...
We present a high-precision calculation of the recoil–finite-size correction to the hyperfine splitt...
The ground-state hyperfine splittings in hydrogen and muonium are extremely well measured. The diffe...
Corrections of order alpha^5, alpha^6 are calculated in the hyperfine splitting of muonic hydrogen g...
We evaluate the two-photon exchange corrections to the Lamb shift and hyperfine splitting of S state...
Elastic electron-proton scattering has been a time-honored tool to provide basic information on gene...
We consider the proton structure corrections to hydrogen ground-state hyperfine structure, focusing ...
Laser spectroscopy of muonic atoms has been recently used to probe properties of light nuclei with u...
The ongoing experimental efforts to measure the hyperfine transition in muonic hydrogen prompt an ac...
We calculate corrections of orders α4, α5, α6 to the (1S – 2S) fine structure interval in muonic hyd...
The ongoing experimental efforts to measure the hyperfine transition in muonic hydrogen prompt an ac...
The recent Lamb shift experiment at PSI and the discussions about the incompatibility of the proton ...
We constrain the possibility of a new pseudoscalar coupling between the muon and proton using a rece...
Abstract We reevaluate the Zemach, recoil and polarizability corrections to the hyperfine splitting ...
We provide an accurate evaluation of the two-photon exchange correction to the hyperfine splitting o...
Abstract We obtain a model-independent prediction for the two-photon exchange contribution to the hy...
We present a high-precision calculation of the recoil–finite-size correction to the hyperfine splitt...
The ground-state hyperfine splittings in hydrogen and muonium are extremely well measured. The diffe...
Corrections of order alpha^5, alpha^6 are calculated in the hyperfine splitting of muonic hydrogen g...
We evaluate the two-photon exchange corrections to the Lamb shift and hyperfine splitting of S state...
Elastic electron-proton scattering has been a time-honored tool to provide basic information on gene...
We consider the proton structure corrections to hydrogen ground-state hyperfine structure, focusing ...
Laser spectroscopy of muonic atoms has been recently used to probe properties of light nuclei with u...
The ongoing experimental efforts to measure the hyperfine transition in muonic hydrogen prompt an ac...
We calculate corrections of orders α4, α5, α6 to the (1S – 2S) fine structure interval in muonic hyd...
The ongoing experimental efforts to measure the hyperfine transition in muonic hydrogen prompt an ac...
The recent Lamb shift experiment at PSI and the discussions about the incompatibility of the proton ...
We constrain the possibility of a new pseudoscalar coupling between the muon and proton using a rece...