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Femtoscopy of $pp$ collisions at $\sqrt{s}=0.9$ and 7 TeV at the LHC with two-pion Bose-Einstein correlations

The collaboration
Phys.Rev. D84 (2011) 112004, 2011.

Abstract (data abstract)
CERN-LHC. We report on the high statistics two-pion correlation functions from pp collisions at $\sqrt{s}$=0.9 TeV and $\sqrt{s}$=7 TeV, measured by the ALICE experiment at the Large Hadron Collider. The correlation functions as well as the extracted source radii scale with event multiplicity and pair momentum. When analyzed in the same multiplicity and pair transverse momentum range, the correlation is similar at the two collision energies.

• #### Table 1

Data from Figure 11 panel (a)

10.17182/hepdata.74220.v1/t1

Parameters of the three-dimensional Gaussian fits to the complete set of the correlation functions in 8 ranges in multiplicity and...

• #### Table 2

Data from Figure 11 panel (b)

10.17182/hepdata.74220.v1/t2

Parameters of the three-dimensional Gaussian fits to the complete set of the correlation functions in 8 ranges in multiplicity and...

• #### Table 3

Data from Figure 11 panel (c)

10.17182/hepdata.74220.v1/t3

Parameters of the three-dimensional Gaussian fits to the complete set of the correlation functions in 8 ranges in multiplicity and...

• #### Table 4

Data from Figure 11 panel (a)

10.17182/hepdata.74220.v1/t4

Parameters of the three-dimensional Gaussian fits to the complete set of the correlation functions in 8 ranges in multiplicity and...

• #### Table 5

Data from Figure 11 panel (b)

10.17182/hepdata.74220.v1/t5

Parameters of the three-dimensional Gaussian fits to the complete set of the correlation functions in 8 ranges in multiplicity and...

• #### Table 6

Data from Figure 11 panel (c)

10.17182/hepdata.74220.v1/t6

Parameters of the three-dimensional Gaussian fits to the complete set of the correlation functions in 8 ranges in multiplicity and...

• #### Table 7

Data from Figure 16 panel (a)

10.17182/hepdata.74220.v1/t7

Parameters of the three-dimensional Exponential-Gaussian-Exponential fits to the complete set of the correlation functions in 8 ranges in multiplicity and...

• #### Table 8

Data from Figure 16 panel (b)

10.17182/hepdata.74220.v1/t8

Parameters of the three-dimensional Exponential-Gaussian-Exponential fits to the complete set of the correlation functions in 8 ranges in multiplicity and...

• #### Table 9

Data from Figure 16 panel (c)

10.17182/hepdata.74220.v1/t9

Parameters of the three-dimensional Exponential-Gaussian-Exponential fits to the complete set of the correlation functions in 8 ranges in multiplicity and...

• #### Table 10

Data from Figure 16 panel (a)

10.17182/hepdata.74220.v1/t10

Parameters of the three-dimensional Exponential-Gaussian-Exponential fits to the complete set of the correlation functions in 8 ranges in multiplicity and...

• #### Table 11

Data from Figure 16 panel (b)

10.17182/hepdata.74220.v1/t11

Parameters of the three-dimensional Exponential-Gaussian-Exponential fits to the complete set of the correlation functions in 8 ranges in multiplicity and...

• #### Table 12

Data from Figure 16 panel (c)

10.17182/hepdata.74220.v1/t12

Parameters of the three-dimensional Exponential-Gaussian-Exponential fits to the complete set of the correlation functions in 8 ranges in multiplicity and...

• #### Table 13

Data from Table I

10.17182/hepdata.74220.v1/t13

Multiplicity selection for the analyzed sample. Uncorrected $N_{\rm ch}$ in $|\eta|$ < 1.2, $<dN_{\rm ch}/d\eta>|_{N_{\rm ch} >=1}$, number of events,...

• #### Table 14

Data from Table I

10.17182/hepdata.74220.v1/t14

Multiplicity selection for the analyzed sample. Uncorrected $N_{\rm ch}$ in $|\eta|$ < 1.2, $<dN_{\rm ch}/d\eta>|_{N_{\rm ch} >=1}$, number of events,...