Chris@16
|
1 // Boost.Units - A C++ library for zero-overhead dimensional analysis and
|
Chris@16
|
2 // unit/quantity manipulation and conversion
|
Chris@16
|
3 //
|
Chris@16
|
4 // Copyright (C) 2003-2008 Matthias Christian Schabel
|
Chris@16
|
5 // Copyright (C) 2008 Steven Watanabe
|
Chris@16
|
6 //
|
Chris@16
|
7 // Distributed under the Boost Software License, Version 1.0. (See
|
Chris@16
|
8 // accompanying file LICENSE_1_0.txt or copy at
|
Chris@16
|
9 // http://www.boost.org/LICENSE_1_0.txt)
|
Chris@16
|
10
|
Chris@16
|
11 #ifndef BOOST_UNITS_CODATA_PROTON_CONSTANTS_HPP
|
Chris@16
|
12 #define BOOST_UNITS_CODATA_PROTON_CONSTANTS_HPP
|
Chris@16
|
13
|
Chris@16
|
14 #include <boost/units/static_constant.hpp>
|
Chris@16
|
15
|
Chris@16
|
16 #include <boost/units/systems/detail/constants.hpp>
|
Chris@16
|
17 #include <boost/units/systems/si/amount.hpp>
|
Chris@16
|
18 #include <boost/units/systems/si/area.hpp>
|
Chris@16
|
19 #include <boost/units/systems/si/electric_charge.hpp>
|
Chris@16
|
20 #include <boost/units/systems/si/energy.hpp>
|
Chris@16
|
21 #include <boost/units/systems/si/frequency.hpp>
|
Chris@16
|
22 #include <boost/units/systems/si/length.hpp>
|
Chris@16
|
23 #include <boost/units/systems/si/mass.hpp>
|
Chris@16
|
24 #include <boost/units/systems/si/magnetic_flux_density.hpp>
|
Chris@16
|
25 #include <boost/units/systems/si/time.hpp>
|
Chris@16
|
26 #include <boost/units/systems/si/wavenumber.hpp>
|
Chris@16
|
27
|
Chris@16
|
28 #include <boost/units/systems/si/codata/typedefs.hpp>
|
Chris@16
|
29
|
Chris@16
|
30 /// \file
|
Chris@16
|
31 /// CODATA recommended values of fundamental atomic and nuclear constants
|
Chris@16
|
32 /// CODATA 2006 values as of 2007/03/30
|
Chris@16
|
33
|
Chris@16
|
34 namespace boost {
|
Chris@16
|
35
|
Chris@16
|
36 namespace units {
|
Chris@16
|
37
|
Chris@16
|
38 namespace si {
|
Chris@16
|
39
|
Chris@16
|
40 namespace constants {
|
Chris@16
|
41
|
Chris@16
|
42 namespace codata {
|
Chris@16
|
43
|
Chris@16
|
44 /// CODATA recommended values of the fundamental physical constants: NIST SP 961
|
Chris@16
|
45
|
Chris@16
|
46 /// proton mass
|
Chris@16
|
47 BOOST_UNITS_PHYSICAL_CONSTANT(m_p,quantity<mass>,1.672621637e-27*kilograms,8.3e-35*kilograms);
|
Chris@16
|
48 /// proton-electron mass ratio
|
Chris@16
|
49 BOOST_UNITS_PHYSICAL_CONSTANT(m_p_over_m_e,quantity<dimensionless>,1836.15267247*dimensionless(),8.0e-7*dimensionless());
|
Chris@16
|
50 /// proton-muon mass ratio
|
Chris@16
|
51 BOOST_UNITS_PHYSICAL_CONSTANT(m_p_over_m_mu,quantity<dimensionless>,8.88024339*dimensionless(),2.3e-7*dimensionless());
|
Chris@16
|
52 /// proton-tau mass ratio
|
Chris@16
|
53 BOOST_UNITS_PHYSICAL_CONSTANT(m_p_over_m_tau,quantity<dimensionless>,0.528012*dimensionless(),8.6e-5*dimensionless());
|
Chris@16
|
54 /// proton-neutron mass ratio
|
Chris@16
|
55 BOOST_UNITS_PHYSICAL_CONSTANT(m_p_over_m_n,quantity<dimensionless>,0.99862347824*dimensionless(),4.6e-10*dimensionless());
|
Chris@16
|
56 /// proton charge to mass ratio
|
Chris@16
|
57 BOOST_UNITS_PHYSICAL_CONSTANT(e_over_m_p,quantity<electric_charge_over_mass>,9.57883392e7*coulombs/kilogram,2.4e0*coulombs/kilogram);
|
Chris@16
|
58 /// proton molar mass
|
Chris@16
|
59 BOOST_UNITS_PHYSICAL_CONSTANT(M_p,quantity<mass_over_amount>,1.00727646677e-3*kilograms/mole,1.0e-13*kilograms/mole);
|
Chris@16
|
60 /// proton Compton wavelength
|
Chris@16
|
61 BOOST_UNITS_PHYSICAL_CONSTANT(lambda_C_p,quantity<length>,1.3214098446e-15*meters,1.9e-24*meters);
|
Chris@16
|
62 /// proton rms charge radius
|
Chris@16
|
63 BOOST_UNITS_PHYSICAL_CONSTANT(R_p,quantity<length>,0.8768e-15*meters,6.9e-18*meters);
|
Chris@16
|
64 /// proton magnetic moment
|
Chris@16
|
65 BOOST_UNITS_PHYSICAL_CONSTANT(mu_p,quantity<energy_over_magnetic_flux_density>,1.410606662e-26*joules/tesla,3.7e-34*joules/tesla);
|
Chris@16
|
66 /// proton-Bohr magneton ratio
|
Chris@16
|
67 BOOST_UNITS_PHYSICAL_CONSTANT(mu_p_over_mu_B,quantity<dimensionless>,1.521032209e-3*dimensionless(),1.2e-11*dimensionless());
|
Chris@16
|
68 /// proton-nuclear magneton ratio
|
Chris@16
|
69 BOOST_UNITS_PHYSICAL_CONSTANT(mu_p_over_mu_N,quantity<dimensionless>,2.792847356*dimensionless(),2.3e-8*dimensionless());
|
Chris@16
|
70 /// proton g-factor
|
Chris@16
|
71 BOOST_UNITS_PHYSICAL_CONSTANT(g_p,quantity<dimensionless>,5.585694713*dimensionless(),4.6e-8*dimensionless());
|
Chris@16
|
72 /// proton-neutron magnetic moment ratio
|
Chris@16
|
73 BOOST_UNITS_PHYSICAL_CONSTANT(mu_p_over_mu_n,quantity<dimensionless>,-1.45989806*dimensionless(),3.4e-7*dimensionless());
|
Chris@16
|
74 /// shielded proton magnetic moment
|
Chris@16
|
75 BOOST_UNITS_PHYSICAL_CONSTANT(mu_p_prime,quantity<energy_over_magnetic_flux_density>,1.410570419e-26*joules/tesla,3.8e-34*joules/tesla);
|
Chris@16
|
76 /// shielded proton-Bohr magneton ratio
|
Chris@16
|
77 BOOST_UNITS_PHYSICAL_CONSTANT(mu_p_prime_over_mu_B,quantity<dimensionless>,1.520993128e-3*dimensionless(),1.7e-11*dimensionless());
|
Chris@16
|
78 /// shielded proton-nuclear magneton ratio
|
Chris@16
|
79 BOOST_UNITS_PHYSICAL_CONSTANT(mu_p_prime_over_mu_N,quantity<dimensionless>,2.792775598*dimensionless(),3.0e-8*dimensionless());
|
Chris@16
|
80 /// proton magnetic shielding correction
|
Chris@16
|
81 BOOST_UNITS_PHYSICAL_CONSTANT(sigma_p_prime,quantity<dimensionless>,25.694e-6*dimensionless(),1.4e-8*dimensionless());
|
Chris@16
|
82 /// proton gyromagnetic ratio
|
Chris@16
|
83 BOOST_UNITS_PHYSICAL_CONSTANT(gamma_p,quantity<frequency_over_magnetic_flux_density>,2.675222099e8/second/tesla,7.0e0/second/tesla);
|
Chris@16
|
84 /// shielded proton gyromagnetic ratio
|
Chris@16
|
85 BOOST_UNITS_PHYSICAL_CONSTANT(gamma_p_prime,quantity<frequency_over_magnetic_flux_density>,2.675153362e8/second/tesla,7.3e0/second/tesla);
|
Chris@16
|
86
|
Chris@16
|
87 } // namespace codata
|
Chris@16
|
88
|
Chris@16
|
89 } // namespace constants
|
Chris@16
|
90
|
Chris@16
|
91 } // namespace si
|
Chris@16
|
92
|
Chris@16
|
93 } // namespace units
|
Chris@16
|
94
|
Chris@16
|
95 } // namespace boost
|
Chris@16
|
96
|
Chris@16
|
97 #endif // BOOST_UNITS_CODATA_PROTON_CONSTANTS_HPP
|