Low scale gravity mediation in warped extra dimensions and collider phenomenology on sector hidden sector LCWS 06, March 10, Bangalore Nobuchika.

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Low scale gravity mediation in warped extra dimensions and collider phenomenology on sector hidden sector LCWS 06, March 10, Bangalore Nobuchika Okada (KEK) in collaboration with Hideo Itoh (KEK) Toshifumi Yamashita (SISSA) hep-ph/0603xxx, in preparation

Fine-tuning (naturalness) problem in the Standard Model Serious problem: SM vacuum is not stable under quantum corrections because Higgs self energy is UV sensitive 1. Introduction In order to solve this problem  Supersymmetry (SUSY) New Physics without quadratic divergence in quantum corrections But… sparticles have not been observed yet  SUSY should be broken at low energy Important issues: Origin of SUSY breaking? Origin of SUSY breaking mediation to MSSM sector? Basic model for phenomenology  MSSM with soft SUSY breaking terms

1. SUSY breaking in hidden sector Singet chiral superfield: 2. Some mechanism for SUSY breaking mediation hidden sector MSSM gravity, gauge,… Effective interaction for SUSY braking mediation Gaugino masses: Sfermion masses: : SUSY breaking mediation scale Ex) Gravity mediaiton (mSUGRA): Gauge mediation:

What if ?  SUSY breaking very low scale 1. Is there any model? 2. New future colliders? Plan of this Talk 1. Introduction 2. New SUSY breaking mediation low scale ``Low scale gravity mediation in warped extra-dimension’’ is possible without any fine-tuning 3. Collider phenomenology on hidden sector fields low  strong interaction among hidden & MSSM sector fields 4. Summary

Warped Extra Dimension Scenario (Randall-Sundrum type scenario) 5-dim. theory compactified on orbifold y Solution of Einstein Eqs. Appropriate tuning of cosmological constants in the bulk and on the branes Flat 4D theory Randall & Sundrum, PRL 83, 3370 (1999) 2. Model ``low scale gravity mediation in warped extra-dimensions’’

Warping down of the scale  mass parameter on IR brane is always accompanied by the warp factor UV brane IR brane : radius of 5 th dim. : angle of ``warping down’’ Effective cutoff (gravity) scale on IR brane We need just a mild hierarchy can be 1-10 TeV!

Low scale gravity mediation 5 th -dim Setup hidden sector field MSSM sector fields gravity multiplet SUSY warped extra dimension UV brane IR brane Gravity mediation (mSUGRA) on IR brane Suppressed by effective cutoff scale not by 4D Planck scale! Usual 4D mSUGRA

Consequence in low scale mSUGRA mediation Scale down of due to the warp factor (we take )  Strong contact interactions among hidden and visible sector fields The same Lagrangians which provide soft terms lead to

3. Collider phenomenology on hidden sector field If the hidden sector scalar X is light enough  produce at LHC and ILC! Production processes are similar to Higgs production Itoh, N.O. & Yamashita, in preparation LHC ILC

LHC via gluon fusion Higgs production via gluon fusion Top loop Suppose But, decay processes are quite deferent as will be discussed in the following X particle behaves like Higgs boson

X decay Couplings to gauge bosons Coupling to fermions

For X decay For Higgs decay Branching ratio X boson Higgs boson

For light X boson, we can expect very clean signature of the process for But, Event number ratio LHC

ILC (associate 1 TeV ILC Higgs production X production SM Higgs case ILC

Angular distribution is different! For X boson production For Higgs boson production ILC or

One more interesting feature Originate from the same L RGEs from to gaugino mass spectrum Partial decay width of X to two gauge bosons One to one correspondence Measurements of and  check SUSY breaking mediation mechanism

4. Summary We have proposed ``low scale gravity mediation scenario’’ in warped extra dimensions SUSY breaking mediation in the same manner as in mSUGRA, but, with low scale Strong contact interactions between hidden and MSSM sector fields Collider phenomenology on hidden sector fields  hidden sector field LHC and ILC We can expect clean signature Hidden sector is no more hidden!