Higgs Mass and Other Particles

In summary, the Higgs particle is a localized manifestation of the Higgs field, but it does not impart mass to other particles.
  • #1
RJ Emery
113
6
If the Higgs boson imparts mass to other particles, does it not itself lose mass and energy in the process? As it does its thing, could not the Higgs than transform itself to a different particle, one that may have already been seen, perhaps down to a point particle with no mass?
 
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  • #2
RJ Emery said:
If the Higgs boson imparts mass to other particles …

the higgs field imparts mass to other particles :wink:

btw, can anyone tell me …

what imparts charge to charged particles?? :confused:
 
  • #3
tiny-tim said:
what imparts charge to charged particles?? :confused:[/INDENT]

Good question, along with: what imparts spin,... any property to particles?
I think the key here is that charge of the particles didn't break the symmetry of the SM as masses did. But someone who actually know about particle physics should clarify it.
 
  • #4
tiny-tim said:
btw, can anyone tell me …

what imparts charge to charged particles?? :confused:

ah, i see someone else has started a thread on this …
Amok said:
… I was wondering if you guys could explain to me what is the big deal with the Higgs boson . I get it that it gives mass to particles, but that doesn't really mean much to me. Why isn't there a particle that gives charge to particles? …
 
  • #5
what imparts charge to charged particles?? :confused:

The most easy to understand answer (and admittedly it's only a beginning) is that in Yukawa theory the meson carries the charge between the proton and neutron or vice versa.

Yukawa's Noble prize lecture:
www.nobelprize.org/nobel_prizes/physics/.../yukawa-lecture.pdf

Deeper of course is how fractions of a charge are exchanged in QCD and the theory of Quarks and how spins are involved
 
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  • #6
PhilDSP said:
Yukawa's Noble prize lecture:

link obsolete :redface:

"Nobelprize.org launched a new website in June 2010. This can make your bookmarks disappear."​

try http://www.nobelprize.org/nobel_prizes/physics/laureates/1949/yukawa-lecture.pdf :wink:
 
  • #7
tiny-tim said:
the higgs field imparts mass to other particles

OK. Please explain to me the difference between the Higgs boson/particle and the Higgs field.

In a video for laymen (of which I am one), Daniel Whiteson (an experimental physicist working at CERN) said "The Higgs is the particle responsible for giving mass to other particles." Hence the genesis of my original question in this thread.
 
  • #8
RJ Emery said:
OK. Please explain to me the difference between the Higgs boson/particle and the Higgs field.

the higgs particle is a particle, the higgs field is a field :confused:
In a video for laymen (of which I am one), Daniel Whiteson (an experimental physicist working at CERN) said "The Higgs is the particle responsible for giving mass to other particles." Hence the genesis of my original question in this thread.

do you mean the video made with jorge cham of phd comicsm, at http://io9.com/daniel-whiteson/ ?

yes, at http://www.phdcomics.com/higgs/index.php?page=6 he says that it's the higgs particle

but immediately after that, at http://www.phdcomics.com/higgs/index.php?page=7 he says that it's the higgs field
 
  • #9
tiny-tim said:
the higgs particle is a particle, the higgs field is a field ...

I take it you don't know the difference either.

do you mean the video made with jorge cham of phd comicsm, at http://io9.com/daniel-whiteson/? ... at http://www.phdcomics.com/higgs/index.php?page=6 he says that it's the higgs particle, but immediately after that, at http://www.phdcomics.com/higgs/index.php?page=7 he says that it's the higgs field

That was the basis for my question raised in this post.

I await an answer from a more knowledgeable responder.
 
  • #10
Isn't a particle just a small packet or excited state of a field? Wouldnt that mean that the Higgs particle IS the Higgs field in a local state of excitement?

Sorry, I'm not a physicist, just interrested.
 

What is the Higgs mass?

The Higgs mass is a fundamental property of the Higgs boson, which is a subatomic particle that is responsible for giving other particles their mass. It is measured in electron volts (eV) and is currently estimated to be around 125 GeV (gigaelectron volts) based on data from the Large Hadron Collider.

Why is the Higgs mass important?

The Higgs mass is important because it helps us understand the origin of mass in the universe. Without the Higgs boson and its associated mass, particles would not have enough mass to form atoms, and therefore, matter as we know it would not exist.

What other particles are affected by the Higgs field?

The Higgs field affects all fundamental particles that have mass, including quarks, leptons, and gauge bosons. However, the strength of the interaction between the Higgs field and these particles varies, resulting in different masses for each particle.

What is the significance of discovering the Higgs boson?

The discovery of the Higgs boson in 2012 confirmed the existence of the Higgs field, which is a crucial part of the Standard Model of particle physics. It also helped to validate the predictions of the Standard Model and provided a better understanding of the fundamental building blocks of the universe.

How does the Higgs mass relate to the mass of the universe?

The Higgs mass is just one small component of the overall mass of the universe. It is estimated that the Higgs field only makes up about 1% of the total mass of the universe, with the remaining 99% being made up of dark matter and dark energy, which are still largely unknown to us.

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