The production of $B^{\pm}$ mesons is studied in $pp$ collisions at centreofmass energies of 7 and 13 TeV, using $B^{\pm}\rightarrow J/\psi K^{\pm}$ decays and data samples corresponding to 1.0 fb$^{1}$ and 0.3 fb$^{1}$, respectively. The production crosssections summed over both charges and integrated over the transverse momentum range $0<p_{\text{T}}< 40$ GeV/$c$ and the rapidity range $2.0<y<4.5$ are measured to be $\sigma(pp \rightarrow B^{\pm} X, \sqrt{s} = \text{7 TeV}) = 43.0 \pm 0.2 \pm 2.5 \pm 1.7\mu b,$ $\sigma(pp \rightarrow B^{\pm} X, \sqrt{s} = \text{13 TeV}) = 86.6 \pm 0.5 \pm 5.4 \pm 3.4\mu b,$ where the first uncertainties are statistical, the second are systematic, and the third are due to the limited knowledge of the $B^{\pm}\rightarrow J/\psi K^{\pm}$ branching fraction. The ratio of the crosssection at 13 TeV to that at 7 TeV is determined to be $2.02\pm0.02\text{(stat)}\pm0.12\text{(syst)}$. Differential crosssections are also reported as functions of $p_{\text{T}}$ and $y$. All results are in agreement with theoretical calculations based on the stateofart fixed nexttoleading order quantum chromodynamics.
Invariant mass distributions of $ B ^\pm$ candidates in the range ${3.5< p_{\mathrm{ T}} <4.0 {\mathrm{ Ge V /}c} }$ and ${2.5<y<3.0}$ using (left) $7\mathrm{ Te V} $ and (right) $13\mathrm{ Te V} $ data. The black points are the number of selected candidates in each bin, the blue curve represents the fit result, the reddotted line represents the $ B ^\pm \rightarrow { J \mskip 3mu/\mskip 2mu\psi \mskip 2mu} K ^\pm $ signal, and the green and browndashed lines are contributions from the combinatorial and the Cabibbosuppressed backgrounds. The Cabibbosuppressed background contribution $ B ^\pm \rightarrow { J \mskip 3mu/\mskip 2mu\psi \mskip 2mu} \pi ^\pm $ is only just visible at masses above the signal peak. 
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Measured $ B ^\pm$ doubledifferential production crosssections at (top) $7\mathrm{ Te V} $ and (bottom) $13\mathrm{ Te V} $ as a function of $p_{\mathrm{ T}}$ and $y$. The black points represent the measured values, and the cyan bands are the FONLL predictions [28]. Each set of measurements and predictions in a given rapidity bin is offset by a multiplicative factor $10^{m}$, where the offset factor is shown after the rapidity range. The error bars include both the statistical and systematic uncertainties. 
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Measured $ B ^\pm$ differential crosssection at $7\mathrm{ Te V} $ as a function of (left) $p_{\mathrm{ T}}$ or (right) $y$. The black points represent the measured values, the bluedashed line and cyan band represent the central values and uncertainties of the FONLL prediction [28]. The error bars include both the statistical and systematic uncertainties. 
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Measured $ B ^\pm$ differential crosssection at $13\mathrm{ Te V} $ as a function of (left) $p_{\mathrm{ T}}$ or (right) $y$. The black points represent the measured values, the bluedashed line and cyan band represent the central values and uncertainties of the FONLL prediction [28]. The error bars include both the statistical and systematic uncertainties. 
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Ratio of the $ B ^\pm$ crosssection at $13\mathrm{ Te V} $ to that at $7\mathrm{ Te V} $ as a function of (left) $p_{\mathrm{ T}}$ or (right) $y$. The black points represent the measured values, the bluedashed line and cyan band represent the central values and uncertainties of the FONLL prediction [28]. 
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Measured acceptance efficiency of $ B ^\pm$ events at (left) $7\mathrm{ Te V} $ and (right) $13\mathrm{ Te V} $ as a function of $p_{\mathrm{ T}}$ in different $y$ regions. 
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Animated gif made out of all figures. 
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Summary of relative systematic uncertainties on the integrated production crosssections at {$\sqrt{s}=$ 7} and $13\mathrm{ Te V} $, and the ratio of the crosssections $R(13\mathrm{ Te V} /7\mathrm{ Te V} )$. 
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Measured $\varepsilon_{\text{tot}}$ of $ B ^\pm$ events at $7\mathrm{ Te V} $, in the bins of $ B ^\pm$ $p_{\mathrm{ T}}$ and $y$. The efficiencies and uncertainties are in percent. 
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Measured $\varepsilon_{\text{tot}}$ of $ B ^\pm$ events at $13\mathrm{ Te V} $, in the bins of $ B ^\pm$ $p_{\mathrm{ T}}$ and $y$. The efficiencies and uncertainties are in percent. 
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Measured $ B ^\pm$ doubledifferential crosssection (in units of $\mathrm{ nb}$ ) at $7\mathrm{ Te V} $, as a function of $p_{\mathrm{ T}}$ and $y$, in the rapidity regions of $2.0<y<2.5$, $2.5<y<3.0$, and $3.0<y<3.5$. 
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Measured $ B ^\pm$ doubledifferential crosssection (in units of $\mathrm{ nb}$ ) at $7\mathrm{ Te V} $, as a function of $p_{\mathrm{ T}}$ and $y$, in the rapidity regions of $3.5<y<4.0$ and $4.0<y<4.5$. 
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Measured $ B ^\pm$ doubledifferential crosssection (in units of $\mathrm{ nb}$ ) at $13\mathrm{ Te V} $, as a function of $p_{\mathrm{ T}}$ and $y$, in the rapidity regions of $2.0<y<2.5$, $2.5<y<3.0$, and $3.0<y<3.5$. 
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Measured $ B ^\pm$ doubledifferential crosssection (in units of $\mathrm{ nb}$ ) at $13\mathrm{ Te V} $, as a function of $p_{\mathrm{ T}}$ and $y$, in the rapidity regions of $3.5<y<4.0$ and $4.0<y<4.5$. 
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Measured $ B ^\pm$ differential crosssections (in units of $\mathrm{ nb} $) at $7\mathrm{ Te V} $ and $13\mathrm{ Te V} $ as functions of $p_{\mathrm{ T}}$ in the range $2.0<y<4.5$. The crosssection ratio between $13\mathrm{ Te V} $ and $7\mathrm{ Te V} $ is also presented. 
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Measured $ B ^\pm$ differential crosssections (in units of $ {\mathrm{ \upmu b}} $) at $7\mathrm{ Te V} $ and $13\mathrm{ Te V} $ as functions of $y$ in the $p_{\mathrm{ T}}$ range $0< p_{\mathrm{ T}} <40 {\mathrm{ Ge V /}c} $. The crosssection ratio between $13\mathrm{ Te V} $ and $7\mathrm{ Te V} $ is also presented. 
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Created on 20 August 2019.Citation count from INSPIRE on 23 August 2019.