Skip to content
NCERT Exemplar · Q11

Q.Deuteron is a bound state of a neutron and a proton with a binding energy B=2.2 MeVB = 2.2\ \text{MeV}. A γ\gamma-ray of energy EE is aimed at a deuteron nucleus to try to break it into a (neutron + proton) such that the n and p move in the direction of the incident γ\gamma-ray. If E=BE = B, show that this cannot happen. Hence calculate how much bigger than BB must EE be for such a process to happen.

Punjab PsebLong· 5mImportance★★★★★
90% · 45/50 Questions
🔒 Locked · start free trial →

You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.

Start your 14-day free trial to unlock the full solution →

A γ\gamma-ray of energy exactly BB cannot break the deuteron because the freed nucleons must carry the photon's momentum E/cE/c; the photon must exceed BB by B24mc2≈1.3 keV\dfrac{B^2}{4mc^2}\approx 1.3\ \text{keV}.

The physics

Binding energy alone is not the whole story. A photon of energy EE always carries momentum pγ=E/cp_\gamma = E/c. When it is absorbed by the deuteron (initially at rest), the products must conserve both energy and momentum. Momentum conservation is what makes E=BE=B impossible.

Step 1 — Conservation laws

Let the photon move along +x+x with energy EE and momentum E/cE/c. The neutron and proton emerge in the +x+x direction. Writing the nucleon mass as mm (so mn≈mp≈mm_n \approx m_p \approx m, mc2≈938 MeVmc^2 \approx 938\ \text{MeV}) and the deuteron mass as Md=2m−B/c2M_d = 2m - B/c^2:

  • Momentum: Ec=pn+pp\dfrac{E}{c} = p_n + p_p
  • Energy: E+Mdc2=(total energy of n+p)E + M_d c^2 = (\text{total energy of } n + p)

Step 2 — Why E=BE=B is impossible

Suppose E=BE = B. Absorbing the photon just supplies the energy needed to unbind the pair, so nothing is left over for kinetic energy — the neutron and proton would have to be produced at rest, giving zero total momentum. But the incoming photon carried momentum E/c=B/c≠0E/c = B/c \neq 0. Zero cannot equal B/cB/c, so the two conservation laws cannot both hold. The reaction is forbidden at E=BE=B.

Step 3 — Threshold energy

At threshold the nucleons move forward together with the same velocity (a composite of mass ≈2m\approx 2m) carrying the whole momentum E/cE/c. Their kinetic energy is …

Unlock everything free for 14 days

  • Full step-by-step solutions
  • Concept-first explanations
  • Methods, shortcuts & mistakes
  • PYQ mapping + timed mock tests

Full access for 14 days. No credit card required.