How deep can geophysics see

VEXRAD • Deep Subsurface Intelligence

How Deep Can Geophysics See?

There is no single maximum depth for geophysics. The useful question is: at what depth can a particular method detect and resolve the geological feature you care about?

Depth of investigation depends on the physics of the method, frequency, subsurface properties, target geometry, survey configuration, signal-to-noise ratio and the level of resolution required.

Depth is not one number

Penetration, detection and resolution are different things.

Penetration

How far useful physical energy or field sensitivity extends into the subsurface.

Detection

Whether a target creates a response distinguishable from background geology and noise.

Resolution

Whether the data can distinguish the target’s depth, geometry or boundaries at the scale needed for the decision.

Why this matters: sensitivity at depth does not guarantee that a small or subtle target can be resolved there. Theoretical penetration should not be presented as guaranteed target detection.

Electromagnetic penetration

How deep can EM detect?

Electromagnetic energy is attenuated as it travels through conductive earth materials. In simplified conditions this is often described using skin depth: the depth at which field amplitude has fallen to about 1/e of its surface value.

A commonly used approximation for a conductive half-space is:

δ ≈ 500 √(1 / σf)

δ = skin depth (m) • σ = conductivity (S/m) • f = frequency (Hz)

Lower frequency → generally deeper penetration

Reducing frequency increases skin depth, all else equal, but commonly reduces spatial resolution.

Higher conductivity → generally shallower penetration

Conductive overburden, saline fluids, clays and conductive formations can strongly attenuate EM energy.

Skin depth is a physical approximation, not a promise that a target at that depth will be detected or geologically resolved.

Method matters

Different methods investigate very different depth scales.

These descriptions are intentionally indicative. Actual depth varies with geology, equipment, geometry, processing and survey objective.

MethodIndicative depth contextMain depth controlsPrimary role
GPRUsually shallow; tens of metres possible in favourable low-loss materialsConductivity, frequency, water/clay content, antennaHigh-resolution shallow imaging
FDEMShallow to moderate; configuration dependentFrequency, coil spacing, conductivityConductivity mapping
TDEM / TEMCommonly tens to hundreds of metresLoop size, time window, conductivity contrastResistivity/conductivity sounding
AMT / MTHundreds of metres to kilometres; long-period MT can investigate crustal scalesPeriod/frequency, resistivity structure, spacing, data qualityDeep electrical structure
SeismicFrom shallow engineering scale to many kilometres with suitable designSource, geometry, velocity contrasts, noise, processingStructural/velocity imaging
ADR / VEXRADProject-specific; assessed against target depth, geology and evidenceTarget response, host geology, acquisition, signal quality, processing and validationDepth-referenced pre-drill subsurface intelligence

The deep-target problem

Why “Can you see to 3 km?” is not enough.

What is the target?

A thick conductive unit, narrow vein, alteration zone, fracture system and lithological boundary are very different geophysical problems.

What surrounds it?

Host rock, conductive cover, fluids and structural complexity can help or hinder detection and interpretation.

What decision is required?

Detecting an anomaly, estimating a boundary and predicting lithology at a drill location require different evidence.

Where VEXRAD fits

Deep investigation should be framed as a testable geological question.

VEXRAD projects can be designed to investigate subsurface intervals extending to kilometre scale, but target depth alone does not establish detectability. VEXRAD evaluates target geometry and geology, expected physical-property response, acquisition conditions, signal quality, available calibration information and independent evidence.

A quoted depth is not proof of detection. A Virtual Borehole is an interpretation intended to add evidence before drilling. Where drilling, logs, assays or other independent data become available, prediction should be compared with outcome.

A better feasibility question

Bring us the target, not just the depth.

Useful information

  • Target depth and expected thickness
  • Commodity, reservoir or geological objective
  • Known host lithology and cover
  • Existing drilling and geophysics
  • Expected physical-property contrast
  • Location and access constraints

What VEXRAD can assess

  • Whether the geological question is sufficiently defined
  • Whether ADR is potentially suitable
  • What evidence should be integrated
  • Whether calibration/control locations exist
  • What a pilot could test
  • How success should be validated

Frequently asked questions

Deep geophysics FAQs

How deep can geophysics see?

There is no universal depth limit. Useful depth depends on the method, geology, survey design, target and required resolution.

How deep can electromagnetic geophysics detect?

EM depth varies strongly with frequency, conductivity and system geometry. Lower frequencies and more resistive ground generally favour greater penetration; conductive materials increase attenuation.

What is skin depth in geophysics?

Skin depth measures EM attenuation: in a simplified medium, it is the depth at which field amplitude decreases to approximately 1/e of its surface value. It is not a guaranteed target-detection depth.

Does deeper penetration mean better imaging?

No. Depth and resolution often trade off. Deep sensitivity does not guarantee sufficient resolution for a small or subtle target.

Can geophysics replace drilling?

No. Geophysics can reduce uncertainty and help prioritise targets, while drilling provides direct subsurface evidence.

Can VEXRAD investigate kilometre-scale targets?

VEXRAD can assess kilometre-scale targets, but suitability is project-specific and depends on target geometry, geological setting, signal quality and available validation evidence.

Have a difficult deep target?

Bring us one deep target.

Tell us what you are trying to find, how deep you expect it to be and what evidence you already have. Start with a Project Fit Check before committing to a larger programme.