It is simulation results with the same potential. You can help to check these two references.
[1] Molecular Physics 48(6):1357-1368 ยท April 1983
DOI: 10.1080/00268978300100971
I did similar simulation with the same potential in the ref. [1].
We can check the normal direction of pressure in a vapor/liquid equilibrium condition.
Figure 3 and 4 show normal and tangential direction of local pressure P(z), respectively.
The normal direction is almost constant for any z position. and for Pt, there is a transition between liquid and vapor.
https://www.researchgate.net/publication/239737668_The_Pressure_Tensor_at_the_Planar_Surface_of_a_Liquid[2] International Journal of Chemical, Molecular, Nuclear, Materials and Metallurgical Engineering Vol:3, No:9, 2009
http://waset.org/publications/3746/molecular-dynamics-simulation-of-liquid-vapor-interface-on-the-solid-surface-using-the-gear-s-algorithmThe liquid and vapor density versus temperature can be found in ref. [2].
The calculated density of my simulation by using quantumwise agrees with the Fig .2.
But for surface tension, (Fig.3) the calculated value is very different. ( the surface tension value is also confirmed by appl 107, 143105 (2015), which show surface tension is 8.16 mJ/m^2 with the same order as ref. [2].
I attached figures for the reference.
Thanks for your help.