vanhees71 said:
Again: You cannot define "position" for an electromagnetic field or of photons, which are certain states of this field (namely single-photon Fock states).
Yes, it is meaningless to speak about position of electromagnetic field.
No, it is perfectly meaningful to speak about position of certain configuration of electromagnetic field.
If for you "electromagnetic field"="photon" then I am at loss.
vanhees71 said:
Nobody thinking about classical electromagnetic waves would ever come to the idea to ask, what the position of a field might be. The very definition of a field is that of a space-time dependent quantity, e.g., the temperature in my office, is a scalar field, which I can measure with a thermometer at different points and at different times. It doesn't make sense to say "the temperature has a certain position", but I can measure the temperature with a thermometer placed at some position.
Yes, it doesn't make sense to say "the temperature has a certain position".
But it makes sense to say "the highest temperature is at certain position".
And would you say it does not make sense to speak about position of
soliton?
vanhees71 said:
For an electromagnetic field you measure intensities, i.e., the energy density of the field at given places. For a photon (one-photon Fock state) it gives the probability to register a photon at a given place determined by the position of the photodetector.
Never heard about direct measurement of energy density of the field. There are different mechanisms how electromagnetic radiation of different wavelength can be absorbed. So any measurement would be specific to certain wavelength range.
So basically it's the other way around. You measure probabilities to register photons of different wavelength and from that you can calculate energy density of the field.
vanhees71 said:
The photon itself has no position, because you cannot define what position might be. For an overview, see
http://arnold-neumaier.at/physfaq/topics/position.html
The only related sentence that I found was this:
"As a consequence of our discussion, photons (m=0, s=1) and gravitons (m=0, s=2) cannot be given natural probabilities for being in any given bounded region of space."
But then there is no problem to give operational definition for position of photon - it's where detector "clicks".